[{"date_created":"2025-01-27T13:01:01Z","type":"journal_article","article_processing_charge":"Yes","ddc":["570"],"_id":"18902","corr_author":"1","intvolume":"        15","doi":"10.1038/s41467-024-45148-8","publication_identifier":{"eissn":["2041-1723"]},"date_updated":"2025-12-30T10:57:08Z","date_published":"2024-02-01T00:00:00Z","title":"Assessing the precision of morphogen gradients in neural tube development","acknowledgement":"MZ is supported by National Science Center, Poland, 2021/42/E/NZ2/00188, the Polish National Agency for Academic Exchange, and by a grant from the Priority Research Area DigiWorld under the Strategic Programme Excellence Initiative at Jagiellonian University. Work in JB’s lab is supported by the Francis Crick Institute, which receives its core funding from Cancer Research UK, the UK Medical Research Council and Wellcome Trust (all under CC001051). Work in the AK lab is supported by ISTA, the European Research Council under Horizon Europe: grant 101044579, and Austrian Science Fund (FWF): F78 (Neural Stem Cell Modulation).","pmid":1,"publication":"Nature Communications","DOAJ_listed":"1","publication_status":"published","oa":1,"language":[{"iso":"eng"}],"OA_place":"publisher","isi":1,"project":[{"name":"Mechanisms of tissue size regulation in spinal cord development","grant_number":"101044579","_id":"bd7e737f-d553-11ed-ba76-d69ffb5ee3aa"},{"_id":"059DF620-7A3F-11EA-A408-12923DDC885E","grant_number":"F7802","name":"Stem Cell Modulation in Neural Development and Regeneration/ P02-Morphogen control of growth and pattern in the spinal cord"}],"author":[{"first_name":"Marcin","last_name":"Zagorski","full_name":"Zagorski, Marcin"},{"full_name":"Brandenberg, Nathalie","first_name":"Nathalie","last_name":"Brandenberg"},{"first_name":"Matthias","last_name":"Lutolf","full_name":"Lutolf, Matthias"},{"last_name":"Tkačik","orcid":"0000-0002-6699-1455","first_name":"Gašper","full_name":"Tkačik, Gašper","id":"3D494DCA-F248-11E8-B48F-1D18A9856A87"},{"full_name":"Bollenbach, Mark Tobias","id":"3E6DB97A-F248-11E8-B48F-1D18A9856A87","last_name":"Bollenbach","orcid":"0000-0003-4398-476X","first_name":"Mark Tobias"},{"full_name":"Briscoe, James","last_name":"Briscoe","first_name":"James"},{"id":"3959A2A0-F248-11E8-B48F-1D18A9856A87","full_name":"Kicheva, Anna","orcid":"0000-0003-4509-4998","first_name":"Anna","last_name":"Kicheva"}],"quality_controlled":"1","year":"2024","OA_type":"gold","file_date_updated":"2025-01-27T13:04:03Z","oa_version":"Published Version","article_number":"929","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"publisher":"Springer Nature","status":"public","file":[{"relation":"main_file","success":1,"date_updated":"2025-01-27T13:04:03Z","content_type":"application/pdf","date_created":"2025-01-27T13:04:03Z","checksum":"acf75f2b6fa84a64d1f590dd4a53cbf7","file_id":"18903","file_size":4723831,"access_level":"open_access","creator":"dernst","file_name":"2024_NatureComm_Zagorski.pdf"}],"scopus_import":"1","has_accepted_license":"1","day":"01","article_type":"letter_note","department":[{"_id":"GaTk"},{"_id":"AnKi"}],"month":"02","external_id":{"pmid":["38302459"],"isi":["001156218500022"]},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","volume":15,"citation":{"ista":"Zagorski M, Brandenberg N, Lutolf M, Tkačik G, Bollenbach MT, Briscoe J, Kicheva A. 2024. Assessing the precision of morphogen gradients in neural tube development. Nature Communications. 15, 929.","chicago":"Zagorski, Marcin, Nathalie Brandenberg, Matthias Lutolf, Gašper Tkačik, Mark Tobias Bollenbach, James Briscoe, and Anna Kicheva. “Assessing the Precision of Morphogen Gradients in Neural Tube Development.” <i>Nature Communications</i>. Springer Nature, 2024. <a href=\"https://doi.org/10.1038/s41467-024-45148-8\">https://doi.org/10.1038/s41467-024-45148-8</a>.","ieee":"M. Zagorski <i>et al.</i>, “Assessing the precision of morphogen gradients in neural tube development,” <i>Nature Communications</i>, vol. 15. Springer Nature, 2024.","ama":"Zagorski M, Brandenberg N, Lutolf M, et al. Assessing the precision of morphogen gradients in neural tube development. <i>Nature Communications</i>. 2024;15. doi:<a href=\"https://doi.org/10.1038/s41467-024-45148-8\">10.1038/s41467-024-45148-8</a>","apa":"Zagorski, M., Brandenberg, N., Lutolf, M., Tkačik, G., Bollenbach, M. T., Briscoe, J., &#38; Kicheva, A. (2024). Assessing the precision of morphogen gradients in neural tube development. <i>Nature Communications</i>. Springer Nature. <a href=\"https://doi.org/10.1038/s41467-024-45148-8\">https://doi.org/10.1038/s41467-024-45148-8</a>","short":"M. Zagorski, N. Brandenberg, M. Lutolf, G. Tkačik, M.T. Bollenbach, J. Briscoe, A. Kicheva, Nature Communications 15 (2024).","mla":"Zagorski, Marcin, et al. “Assessing the Precision of Morphogen Gradients in Neural Tube Development.” <i>Nature Communications</i>, vol. 15, 929, Springer Nature, 2024, doi:<a href=\"https://doi.org/10.1038/s41467-024-45148-8\">10.1038/s41467-024-45148-8</a>."}},{"OA_place":"publisher","language":[{"iso":"eng"}],"oa":1,"publication_status":"published","publication":"Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining","acknowledgement":"Monika Henzinger: This project has received funding from the European Research\r\nCouncil (ERC) under the European Union’s Horizon 2020 research and innovation programme (Grant agreement No. 101019564) and the Austrian Science Fund (FWF) grant DOI 10.55776/Z422, grant DOI 10.55776/I5982, and grant DOI 10.55776/P33775 with additional funding from the netidee SCIENCE Stiftung, 2020–2024.\r\nHarald Räcke, Robin Münk: This project has received funding from the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) – 498605858 and 470029389.","abstract":[{"lang":"eng","text":"Expander decompositions of graphs have significantly advanced the understanding of many classical graph problems and led to numerous fundamental theoretical results. However, their adoption in practice has been hindered due to their inherent intricacies and large hidden factors in their asymptotic running times. Here, we introduce the first practically efficient algorithm for computing expander decompositions and their hierarchies and demonstrate its effectiveness and utility by incorporating it as the core component in a novel solver for the normalized cut graph clustering objective.\r\nOur extensive experiments on a variety of large graphs show that our expander-based algorithm outperforms state-of-the-art solvers for normalized cut with respect to solution quality by a large margin on a variety of graph classes such as citation, e-mail, and social networks or web graphs while remaining competitive in running time."}],"title":"Expander hierarchies for normalized cuts on graphs","date_published":"2024-09-01T00:00:00Z","date_updated":"2025-09-09T12:04:56Z","publication_identifier":{"isbn":["9798400704901"]},"doi":"10.1145/3637528.3671978","ddc":["000"],"_id":"18906","article_processing_charge":"Yes (in subscription journal)","type":"conference","page":"1016-1027","date_created":"2025-01-27T13:20:26Z","citation":{"ista":"Hanauer K, Henzinger M, Münk R, Räcke H, Vötsch M. 2024. Expander hierarchies for normalized cuts on graphs. Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining. KDD: Knowledge Discovery and Data Mining, 1016–1027.","apa":"Hanauer, K., Henzinger, M., Münk, R., Räcke, H., &#38; Vötsch, M. (2024). Expander hierarchies for normalized cuts on graphs. In <i>Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining</i> (pp. 1016–1027). Barcelona, Spain: ACM. <a href=\"https://doi.org/10.1145/3637528.3671978\">https://doi.org/10.1145/3637528.3671978</a>","chicago":"Hanauer, Kathrin, Monika Henzinger, Robin Münk, Harald Räcke, and Maximilian Vötsch. “Expander Hierarchies for Normalized Cuts on Graphs.” In <i>Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining</i>, 1016–27. ACM, 2024. <a href=\"https://doi.org/10.1145/3637528.3671978\">https://doi.org/10.1145/3637528.3671978</a>.","ama":"Hanauer K, Henzinger M, Münk R, Räcke H, Vötsch M. Expander hierarchies for normalized cuts on graphs. In: <i>Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining</i>. ACM; 2024:1016-1027. doi:<a href=\"https://doi.org/10.1145/3637528.3671978\">10.1145/3637528.3671978</a>","ieee":"K. Hanauer, M. Henzinger, R. Münk, H. Räcke, and M. Vötsch, “Expander hierarchies for normalized cuts on graphs,” in <i>Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining</i>, Barcelona, Spain, 2024, pp. 1016–1027.","short":"K. Hanauer, M. Henzinger, R. Münk, H. Räcke, M. Vötsch, in:, Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining, ACM, 2024, pp. 1016–1027.","mla":"Hanauer, Kathrin, et al. “Expander Hierarchies for Normalized Cuts on Graphs.” <i>Proceedings of the 30th ACM SIGKDD Conference on Knowledge Discovery and Data Mining</i>, ACM, 2024, pp. 1016–27, doi:<a href=\"https://doi.org/10.1145/3637528.3671978\">10.1145/3637528.3671978</a>."},"conference":{"location":"Barcelona, Spain","name":"KDD: Knowledge Discovery and Data Mining","end_date":"2024-08-29","start_date":"2024-08-05"},"external_id":{"isi":["001324524201013"]},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","month":"09","department":[{"_id":"MoHe"}],"day":"01","has_accepted_license":"1","ec_funded":1,"status":"public","file":[{"date_created":"2025-01-27T13:25:23Z","content_type":"application/pdf","date_updated":"2025-01-27T13:25:23Z","file_name":"2024_ACMKDD_Hanauer.pdf","creator":"dernst","file_size":1450331,"access_level":"open_access","checksum":"1265d5cf6aa5f94157631651723c4a2b","file_id":"18907","success":1,"relation":"main_file"}],"publisher":"ACM","scopus_import":"1","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"oa_version":"Published Version","file_date_updated":"2025-01-27T13:25:23Z","OA_type":"hybrid","year":"2024","quality_controlled":"1","project":[{"call_identifier":"H2020","_id":"bd9ca328-d553-11ed-ba76-dc4f890cfe62","grant_number":"101019564","name":"The design and evaluation of modern fully dynamic data structures"},{"_id":"34def286-11ca-11ed-8bc3-da5948e1613c","name":"Efficient algorithms","grant_number":"Z00422"},{"_id":"bda196b2-d553-11ed-ba76-8e8ee6c21103","name":"Static and Dynamic Hierarchical Graph Decompositions","grant_number":"I05982"}],"author":[{"full_name":"Hanauer, Kathrin","first_name":"Kathrin","last_name":"Hanauer"},{"first_name":"Monika H","orcid":"0000-0002-5008-6530","last_name":"Henzinger","id":"540c9bbd-f2de-11ec-812d-d04a5be85630","full_name":"Henzinger, Monika H"},{"full_name":"Münk, Robin","last_name":"Münk","first_name":"Robin"},{"full_name":"Räcke, Harald","last_name":"Räcke","first_name":"Harald"},{"last_name":"Vötsch","first_name":"Maximilian","full_name":"Vötsch, Maximilian"}],"isi":1},{"quality_controlled":"1","OA_type":"gold","year":"2024","oa_version":"Published Version","file_date_updated":"2025-01-27T13:33:14Z","isi":1,"author":[{"full_name":"Le Moan, Alan","last_name":"Le Moan","first_name":"Alan"},{"id":"43161670-5719-11EA-8025-FABC3DDC885E","full_name":"Stankowski, Sean","first_name":"Sean","last_name":"Stankowski"},{"last_name":"Rafajlović","first_name":"Marina","full_name":"Rafajlović, Marina"},{"first_name":"Olga","last_name":"Ortega-Martinez","full_name":"Ortega-Martinez, Olga"},{"full_name":"Faria, Rui","first_name":"Rui","last_name":"Faria"},{"last_name":"Butlin","first_name":"Roger K","full_name":"Butlin, Roger K"},{"full_name":"Johannesson, Kerstin","last_name":"Johannesson","first_name":"Kerstin"}],"month":"04","department":[{"_id":"NiBa"}],"external_id":{"isi":["001206532900001"],"pmid":["39479507"]},"volume":8,"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","citation":{"short":"A. Le Moan, S. Stankowski, M. Rafajlović, O. Ortega-Martinez, R. Faria, R.K. Butlin, K. Johannesson, Evolution Letters 8 (2024) 575–586.","mla":"Le Moan, Alan, et al. “Coupling of Twelve Putative Chromosomal Inversions Maintains a Strong Barrier to Gene Flow between Snail Ecotypes.” <i>Evolution Letters</i>, vol. 8, no. 4, Oxford University Press, 2024, pp. 575–86, doi:<a href=\"https://doi.org/10.1093/evlett/qrae014\">10.1093/evlett/qrae014</a>.","ista":"Le Moan A, Stankowski S, Rafajlović M, Ortega-Martinez O, Faria R, Butlin RK, Johannesson K. 2024. Coupling of twelve putative chromosomal inversions maintains a strong barrier to gene flow between snail ecotypes. Evolution Letters. 8(4), 575–586.","ieee":"A. Le Moan <i>et al.</i>, “Coupling of twelve putative chromosomal inversions maintains a strong barrier to gene flow between snail ecotypes,” <i>Evolution Letters</i>, vol. 8, no. 4. Oxford University Press, pp. 575–586, 2024.","chicago":"Le Moan, Alan, Sean Stankowski, Marina Rafajlović, Olga Ortega-Martinez, Rui Faria, Roger K Butlin, and Kerstin Johannesson. “Coupling of Twelve Putative Chromosomal Inversions Maintains a Strong Barrier to Gene Flow between Snail Ecotypes.” <i>Evolution Letters</i>. Oxford University Press, 2024. <a href=\"https://doi.org/10.1093/evlett/qrae014\">https://doi.org/10.1093/evlett/qrae014</a>.","ama":"Le Moan A, Stankowski S, Rafajlović M, et al. Coupling of twelve putative chromosomal inversions maintains a strong barrier to gene flow between snail ecotypes. <i>Evolution Letters</i>. 2024;8(4):575-586. doi:<a href=\"https://doi.org/10.1093/evlett/qrae014\">10.1093/evlett/qrae014</a>","apa":"Le Moan, A., Stankowski, S., Rafajlović, M., Ortega-Martinez, O., Faria, R., Butlin, R. K., &#38; Johannesson, K. (2024). Coupling of twelve putative chromosomal inversions maintains a strong barrier to gene flow between snail ecotypes. <i>Evolution Letters</i>. Oxford University Press. <a href=\"https://doi.org/10.1093/evlett/qrae014\">https://doi.org/10.1093/evlett/qrae014</a>"},"scopus_import":"1","status":"public","file":[{"creator":"dernst","file_name":"2024_EvolutionLetter_Moan.pdf","access_level":"open_access","file_size":24356661,"file_id":"18909","checksum":"2f7780b7b6b3489755f1815f476639c6","date_created":"2025-01-27T13:33:14Z","content_type":"application/pdf","date_updated":"2025-01-27T13:33:14Z","success":1,"relation":"main_file"}],"publisher":"Oxford University Press","tmp":{"short":"CC BY-NC (4.0)","image":"/images/cc_by_nc.png","name":"Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0)","legal_code_url":"https://creativecommons.org/licenses/by-nc/4.0/legalcode"},"has_accepted_license":"1","article_type":"letter_note","day":"23","intvolume":"         8","issue":"4","page":"575-586","date_created":"2025-01-27T13:30:27Z","type":"journal_article","article_processing_charge":"Yes","_id":"18908","ddc":["570"],"acknowledgement":"The computations and data handling were enabled by resources provided by the Swedish National Infrastructure for Computing at UPPMAX partially funded by the Swedish Research Council through grant agreement no. 2018-05973. We thank all the member of the Littorina team for the stimulating discussions about the manuscripts, James Reeves for his help the implementation of Hsplit, and Thomas Broquet for his useful comments in the latter stage of manuscript revisions.","pmid":1,"oa":1,"publication_status":"published","publication":"Evolution Letters","OA_place":"publisher","language":[{"iso":"eng"}],"publication_identifier":{"issn":["2056-3744"]},"doi":"10.1093/evlett/qrae014","date_updated":"2025-09-09T12:05:51Z","title":"Coupling of twelve putative chromosomal inversions maintains a strong barrier to gene flow between snail ecotypes","date_published":"2024-04-23T00:00:00Z","abstract":[{"text":"Chromosomal rearrangements can lead to the coupling of reproductive barriers, but whether and how they contribute to the completion of speciation remains unclear. Marine snails of the genus Littorina repeatedly form hybrid zones between populations segregating for multiple inversion arrangements, providing opportunities to study their barrier effects. Here, we analyzed 2 adjacent transects across hybrid zones between 2 ecotypes of Littorina fabalis (“large” and “dwarf”) adapted to different wave exposure conditions on a Swedish island. Applying whole-genome sequencing, we found 12 putative inversions on 9 of 17 chromosomes. Nine of the putative inversions reached near differential fixation between the 2 ecotypes, and all were in strong linkage disequilibrium. These inversions cover 20% of the genome and carry 93% of divergent single nucleotide polymorphisms (SNPs). Bimodal hybrid zones in both transects indicated that the 2 ecotypes of Littorina fabalis maintain their genetic and phenotypic integrity following contact. The bimodality reflects the strong coupling between inversion clines and the extension of the barrier effect across the whole genome. Demographic inference suggests that coupling arose during a period of allopatry and has been maintained for &amp;gt; 1,000 generations after secondary contact. Overall, this study shows that the coupling of multiple chromosomal inversions contributes to strong reproductive isolation. Notably, 2 of the putative inversions overlap with inverted genomic regions associated with ecotype differences in a closely related species (Littorina saxatilis), suggesting the same regions, with similar structural variants, repeatedly contribute to ecotype evolution in distinct species.","lang":"eng"}],"license":"https://creativecommons.org/licenses/by-nc/4.0/"},{"quality_controlled":"1","OA_type":"hybrid","year":"2024","oa_version":"Published Version","file_date_updated":"2025-01-27T13:44:59Z","isi":1,"project":[{"grant_number":"I05812","name":"AlloSpace. The emergence and mechanisms of allostery","_id":"eb9c82eb-77a9-11ec-83b8-aadd536561cf"}],"author":[{"id":"7B541462-FAF6-11E9-A490-E8DFE5697425","full_name":"Schanda, Paul","orcid":"0000-0002-9350-7606","first_name":"Paul","last_name":"Schanda"},{"first_name":"Gilad","last_name":"Haran","full_name":"Haran, Gilad"}],"month":"07","department":[{"_id":"PaSc"}],"external_id":{"isi":["001278237500012"],"pmid":["38346243"]},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","volume":53,"citation":{"apa":"Schanda, P., &#38; Haran, G. (2024). NMR and single-molecule FRET insights into fast protein motions and their relation to function. <i>Annual Review of Biophysics</i>. Annual Reviews. <a href=\"https://doi.org/10.1146/annurev-biophys-070323-022428\">https://doi.org/10.1146/annurev-biophys-070323-022428</a>","ieee":"P. Schanda and G. Haran, “NMR and single-molecule FRET insights into fast protein motions and their relation to function,” <i>Annual Review of Biophysics</i>, vol. 53. Annual Reviews, pp. 247–273, 2024.","chicago":"Schanda, Paul, and Gilad Haran. “NMR and Single-Molecule FRET Insights into Fast Protein Motions and Their Relation to Function.” <i>Annual Review of Biophysics</i>. Annual Reviews, 2024. <a href=\"https://doi.org/10.1146/annurev-biophys-070323-022428\">https://doi.org/10.1146/annurev-biophys-070323-022428</a>.","ama":"Schanda P, Haran G. NMR and single-molecule FRET insights into fast protein motions and their relation to function. <i>Annual Review of Biophysics</i>. 2024;53:247-273. doi:<a href=\"https://doi.org/10.1146/annurev-biophys-070323-022428\">10.1146/annurev-biophys-070323-022428</a>","ista":"Schanda P, Haran G. 2024. NMR and single-molecule FRET insights into fast protein motions and their relation to function. Annual Review of Biophysics. 53, 247–273.","mla":"Schanda, Paul, and Gilad Haran. “NMR and Single-Molecule FRET Insights into Fast Protein Motions and Their Relation to Function.” <i>Annual Review of Biophysics</i>, vol. 53, Annual Reviews, 2024, pp. 247–73, doi:<a href=\"https://doi.org/10.1146/annurev-biophys-070323-022428\">10.1146/annurev-biophys-070323-022428</a>.","short":"P. Schanda, G. Haran, Annual Review of Biophysics 53 (2024) 247–273."},"file":[{"file_size":3025589,"access_level":"open_access","file_id":"18911","checksum":"c90861542ae3f9147939030d5bafed3c","creator":"dernst","file_name":"2024_AnnualReviews_Schanda.pdf","date_updated":"2025-01-27T13:44:59Z","date_created":"2025-01-27T13:44:59Z","content_type":"application/pdf","success":1,"relation":"main_file"}],"publisher":"Annual Reviews","status":"public","scopus_import":"1","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"has_accepted_license":"1","day":"01","article_type":"original","corr_author":"1","intvolume":"        53","page":"247-273","date_created":"2025-01-27T13:40:34Z","type":"journal_article","article_processing_charge":"No","_id":"18910","ddc":["570"],"acknowledgement":"G.H. is the incumbent of the Hilda Pomeraniec Memorial Professorial Chair. He has been partially funded by the European Research Council under the European Union's Horizon 2020 research and innovation program (grant 742637, SMALLOSTERY), by National Science Foundation–US-Israel Binational Science Foundation grant 2021700, and by an Israel Science Foundation Breakthrough grant (1924/22). P.S. acknowledges funding from the Austrian Science Fund (project “AlloSpace,” I05812) and intramural funding from the Institute of Science and Technology Austria.","pmid":1,"oa":1,"publication_status":"published","publication":"Annual Review of Biophysics","OA_place":"publisher","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["1936-1238"],"issn":["1936-122X"]},"doi":"10.1146/annurev-biophys-070323-022428","date_updated":"2025-09-09T12:06:24Z","title":"NMR and single-molecule FRET insights into fast protein motions and their relation to function","date_published":"2024-07-01T00:00:00Z","abstract":[{"lang":"eng","text":"Proteins often undergo large-scale conformational transitions, in which secondary and tertiary structure elements (loops, helices, and domains) change their structures or their positions with respect to each other. Simple considerations suggest that such dynamics should be relatively fast, but the functional cycles of many proteins are often relatively slow. Sophisticated experimental methods are starting to tackle this dichotomy and shed light on the contribution of large-scale conformational dynamics to protein function. In this review, we focus on the contribution of single-molecule Förster resonance energy transfer and nuclear magnetic resonance (NMR) spectroscopies to the study of conformational dynamics. We briefly describe the state of the art in each of these techniques and then point out their similarities and differences, as well as the relative strengths and weaknesses of each. Several case studies, in which the connection between fast conformational dynamics and slower function has been demonstrated, are then introduced and discussed. These examples include both enzymes and large protein machines, some of which have been studied by both NMR and fluorescence spectroscopies."}]},{"corr_author":"1","article_processing_charge":"No","_id":"18912","date_created":"2025-01-27T13:47:35Z","type":"conference","publication":"SIGGRAPH '24: ACM SIGGRAPH 2024 Conference Papers","publication_status":"published","language":[{"iso":"eng"}],"acknowledgement":"The authors thank the anonymous reviewers for their valuable comments and suggestions for improving the paper. This work was supported by JSPS KAKENHI Grant Numbers JP21K11910, 23KJ0699 and JST AdCORP, Grant Number JPMJKB2302, Japan. This work was partially supported by Israel Science Foundation Grant number 1390/19 and Joint NSFC-ISF Research Grant no. 3077/23. We thank Riku Toyota for his useful advice on wire selection and Takeo Igarashi for his assistance in arranging the collaboration of the authors.","date_published":"2024-07-01T00:00:00Z","title":"Fabricable 3D wire art","abstract":[{"text":"This paper presents a computational method for automatically creating fabricable 3D wire sculptures from various input modalities, including 3D models, images, and even text. There are several challenges to wire art creation. For example, artists must express the desired visual as a sparse wire representation. It is also difficult to manually bend wires in the air without guidance to fabricate the designed 3D curves. Our workflow solves these challenges by using two core techniques. First, we present an algorithm that automatically generates a fabricable 3D curve representation of the target based on a loss function that measures the semantic distance between the rendered curve and the target. The loss function can be defined using different pre-trained vision-language neural networks to generate wire art from different input types. The loss function is then optimized using differentiable rendering specifically targeting 3D parametric curves. Our method can incorporate various fabrication constraints on the wire as additional regularization terms in the optimization process. Second, we present an algorithm to generate a 3D printable jig structure that can be used to fabricate the generated wire path. The major challenge in the jig generation stems from the design of an intersection-free surface mesh for 3D printing, which we address with our inflation algorithm. The experimental results indicate that our method can handle a wider range of input types and can produce physically fabricable wire shapes compared to previous wire generation methods. Various wire arts have been fabricated using our 3D-printed jig to demonstrate its effectiveness in 3D wire bending.","lang":"eng"}],"doi":"10.1145/3641519.3657453","publication_identifier":{"isbn":["9798400705250"]},"date_updated":"2025-09-09T12:06:57Z","year":"2024","OA_type":"closed access","oa_version":"None","article_number":"134","quality_controlled":"1","author":[{"last_name":"Tojo","first_name":"Kenji","full_name":"Tojo, Kenji"},{"last_name":"Shamir","first_name":"Ariel","full_name":"Shamir, Ariel"},{"full_name":"Bickel, Bernd","id":"49876194-F248-11E8-B48F-1D18A9856A87","last_name":"Bickel","first_name":"Bernd","orcid":"0000-0001-6511-9385"},{"last_name":"Umetani","first_name":"Nobuyuki","full_name":"Umetani, Nobuyuki"}],"isi":1,"citation":{"short":"K. Tojo, A. Shamir, B. Bickel, N. Umetani, in:, SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers, ACM, 2024.","mla":"Tojo, Kenji, et al. “Fabricable 3D Wire Art.” <i>SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers</i>, 134, ACM, 2024, doi:<a href=\"https://doi.org/10.1145/3641519.3657453\">10.1145/3641519.3657453</a>.","ista":"Tojo K, Shamir A, Bickel B, Umetani N. 2024. Fabricable 3D wire art. SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers. SIGGRAPH: Computer Graphics and Interactive Techniques Conference, 134.","apa":"Tojo, K., Shamir, A., Bickel, B., &#38; Umetani, N. (2024). Fabricable 3D wire art. In <i>SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers</i>. Denver, CO, United States: ACM. <a href=\"https://doi.org/10.1145/3641519.3657453\">https://doi.org/10.1145/3641519.3657453</a>","ieee":"K. Tojo, A. Shamir, B. Bickel, and N. Umetani, “Fabricable 3D wire art,” in <i>SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers</i>, Denver, CO, United States, 2024.","chicago":"Tojo, Kenji, Ariel Shamir, Bernd Bickel, and Nobuyuki Umetani. “Fabricable 3D Wire Art.” In <i>SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers</i>. ACM, 2024. <a href=\"https://doi.org/10.1145/3641519.3657453\">https://doi.org/10.1145/3641519.3657453</a>.","ama":"Tojo K, Shamir A, Bickel B, Umetani N. Fabricable 3D wire art. In: <i>SIGGRAPH ’24: ACM SIGGRAPH 2024 Conference Papers</i>. ACM; 2024. doi:<a href=\"https://doi.org/10.1145/3641519.3657453\">10.1145/3641519.3657453</a>"},"department":[{"_id":"BeBi"}],"month":"07","user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","external_id":{"isi":["001282218200059"]},"conference":{"location":"Denver, CO, United States","name":"SIGGRAPH: Computer Graphics and Interactive Techniques Conference","end_date":"2024-08-01","start_date":"2024-07-28"},"day":"01","scopus_import":"1","publisher":"ACM","status":"public"},{"abstract":[{"lang":"eng","text":"With the proliferation of blockchain technology in high-value sectors, consensus protocols are becoming critical infrastructures. The rapid innovation cycle in Byzantine fault tolerant (BFT) consensus protocols has culminated in HotStuff, which provides linear message complexity in the partially synchronous setting. To achieve this, HotStuff leverages a leader that collects, aggregates, and broadcasts the messages of other validators. This paper analyzes the security implications of such approaches in practice, from the perspective of liveness and availability.\r\nBy implementing attacks in a globally-distributed testbed, we show that state-of-the-art leader-based protocols are vulnerable to denial-of-service (DoS) attacks on the leader. Our attacks, demonstrated on committees of up to 64 validators, manage to disrupt liveness within seconds, using only a few tens of Mbps of attack bandwidth per validator. Crucially, the cost and effectiveness of the attacks are independent of the committee size. Based on the outcome of these experiments, we then propose and test effective mitigations. Our findings show that advancements in both protocol design and network-layer defenses can greatly improve the practical resilience of BFT consensus protocols."}],"date_published":"2024-07-01T00:00:00Z","title":"An empirical study of consensus protocols’ DoS resilience","date_updated":"2025-09-09T12:07:28Z","doi":"10.1145/3634737.3656997","publication_identifier":{"isbn":["9798400704826"]},"language":[{"iso":"eng"}],"OA_place":"publisher","publication":"Proceedings of the 19th ACM Asia Conference on Computer and Communications Security","publication_status":"published","oa":1,"acknowledgement":"This work was mostly realized while Alberto Sonnino and Lefteris Kokoris-Kogias were employed at Meta. We gratefully acknowledge support for this project from ETH Zurich and Mysten Labs.","_id":"18913","ddc":["000"],"article_processing_charge":"Yes (in subscription journal)","type":"conference","date_created":"2025-01-27T13:57:00Z","page":"1345-1360","day":"01","has_accepted_license":"1","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"status":"public","publisher":"ACM","file":[{"creator":"dernst","file_name":"2024_ACMAsiaCCS_Giuliari.pdf","access_level":"open_access","file_size":951940,"file_id":"18914","checksum":"1e743ddf49d35390eb56e11eb0759150","date_created":"2025-01-27T14:04:12Z","content_type":"application/pdf","date_updated":"2025-01-27T14:04:12Z","success":1,"relation":"main_file"}],"scopus_import":"1","citation":{"short":"G. Giuliari, A. Sonnino, M. Frei, F. Streun, E. Kokoris Kogias, A. Perrig, in:, Proceedings of the 19th ACM Asia Conference on Computer and Communications Security, ACM, 2024, pp. 1345–1360.","mla":"Giuliari, Giacomo, et al. “An Empirical Study of Consensus Protocols’ DoS Resilience.” <i>Proceedings of the 19th ACM Asia Conference on Computer and Communications Security</i>, ACM, 2024, pp. 1345–60, doi:<a href=\"https://doi.org/10.1145/3634737.3656997\">10.1145/3634737.3656997</a>.","ista":"Giuliari G, Sonnino A, Frei M, Streun F, Kokoris Kogias E, Perrig A. 2024. An empirical study of consensus protocols’ DoS resilience. Proceedings of the 19th ACM Asia Conference on Computer and Communications Security. ASIACCS: Asia Conference on Computer and Communications Security, 1345–1360.","apa":"Giuliari, G., Sonnino, A., Frei, M., Streun, F., Kokoris Kogias, E., &#38; Perrig, A. (2024). An empirical study of consensus protocols’ DoS resilience. In <i>Proceedings of the 19th ACM Asia Conference on Computer and Communications Security</i> (pp. 1345–1360). Singapore, Singapore: ACM. <a href=\"https://doi.org/10.1145/3634737.3656997\">https://doi.org/10.1145/3634737.3656997</a>","chicago":"Giuliari, Giacomo, Alberto Sonnino, Marc Frei, Fabio Streun, Eleftherios Kokoris Kogias, and Adrian Perrig. “An Empirical Study of Consensus Protocols’ DoS Resilience.” In <i>Proceedings of the 19th ACM Asia Conference on Computer and Communications Security</i>, 1345–60. ACM, 2024. <a href=\"https://doi.org/10.1145/3634737.3656997\">https://doi.org/10.1145/3634737.3656997</a>.","ama":"Giuliari G, Sonnino A, Frei M, Streun F, Kokoris Kogias E, Perrig A. An empirical study of consensus protocols’ DoS resilience. In: <i>Proceedings of the 19th ACM Asia Conference on Computer and Communications Security</i>. ACM; 2024:1345-1360. doi:<a href=\"https://doi.org/10.1145/3634737.3656997\">10.1145/3634737.3656997</a>","ieee":"G. Giuliari, A. Sonnino, M. Frei, F. Streun, E. Kokoris Kogias, and A. Perrig, “An empirical study of consensus protocols’ DoS resilience,” in <i>Proceedings of the 19th ACM Asia Conference on Computer and Communications Security</i>, Singapore, Singapore, 2024, pp. 1345–1360."},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","external_id":{"isi":["001283918100095"]},"conference":{"start_date":"2024-07-01","end_date":"2024-07-05","name":"ASIACCS: Asia Conference on Computer and Communications Security","location":"Singapore, Singapore"},"department":[{"_id":"ElKo"}],"month":"07","author":[{"full_name":"Giuliari, Giacomo","first_name":"Giacomo","last_name":"Giuliari"},{"full_name":"Sonnino, Alberto","last_name":"Sonnino","first_name":"Alberto"},{"last_name":"Frei","first_name":"Marc","full_name":"Frei, Marc"},{"full_name":"Streun, Fabio","first_name":"Fabio","last_name":"Streun"},{"full_name":"Kokoris Kogias, Eleftherios","id":"f5983044-d7ef-11ea-ac6d-fd1430a26d30","last_name":"Kokoris Kogias","first_name":"Eleftherios"},{"first_name":"Adrian","last_name":"Perrig","full_name":"Perrig, Adrian"}],"isi":1,"file_date_updated":"2025-01-27T14:04:12Z","oa_version":"Published Version","year":"2024","OA_type":"hybrid","quality_controlled":"1"},{"intvolume":"        20","corr_author":"1","issue":"5","type":"journal_article","page":"684-685","date_created":"2025-01-27T14:29:20Z","_id":"18919","article_processing_charge":"No","language":[{"iso":"eng"}],"publication":"Nature Physics","publication_status":"published","date_updated":"2025-09-09T12:08:10Z","publication_identifier":{"issn":["1745-2473"],"eissn":["1745-2481"]},"doi":"10.1038/s41567-024-02401-7","abstract":[{"text":"The integration of theory and experiment makes possible tracking the slow evolution of a photodoped Mott insulator to a distinct non-equilibrium metallic phase under the influence of electron-lattice coupling.","lang":"eng"}],"title":"Through the slopes of a light-induced phase transition","date_published":"2024-05-01T00:00:00Z","quality_controlled":"1","oa_version":"None","OA_type":"closed access","year":"2024","isi":1,"author":[{"full_name":"Baykusheva, Denitsa Rangelova","id":"71b4d059-2a03-11ee-914d-dfa3beed6530","last_name":"Baykusheva","first_name":"Denitsa Rangelova"}],"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","volume":20,"external_id":{"isi":["001162208200002"]},"month":"05","department":[{"_id":"DeBa"}],"citation":{"mla":"Baykusheva, Denitsa Rangelova. “Through the Slopes of a Light-Induced Phase Transition.” <i>Nature Physics</i>, vol. 20, no. 5, Springer Nature, 2024, pp. 684–85, doi:<a href=\"https://doi.org/10.1038/s41567-024-02401-7\">10.1038/s41567-024-02401-7</a>.","short":"D.R. Baykusheva, Nature Physics 20 (2024) 684–685.","apa":"Baykusheva, D. R. (2024). Through the slopes of a light-induced phase transition. <i>Nature Physics</i>. Springer Nature. <a href=\"https://doi.org/10.1038/s41567-024-02401-7\">https://doi.org/10.1038/s41567-024-02401-7</a>","ama":"Baykusheva DR. Through the slopes of a light-induced phase transition. <i>Nature Physics</i>. 2024;20(5):684-685. doi:<a href=\"https://doi.org/10.1038/s41567-024-02401-7\">10.1038/s41567-024-02401-7</a>","ieee":"D. R. Baykusheva, “Through the slopes of a light-induced phase transition,” <i>Nature Physics</i>, vol. 20, no. 5. Springer Nature, pp. 684–685, 2024.","chicago":"Baykusheva, Denitsa Rangelova. “Through the Slopes of a Light-Induced Phase Transition.” <i>Nature Physics</i>. Springer Nature, 2024. <a href=\"https://doi.org/10.1038/s41567-024-02401-7\">https://doi.org/10.1038/s41567-024-02401-7</a>.","ista":"Baykusheva DR. 2024. Through the slopes of a light-induced phase transition. Nature Physics. 20(5), 684–685."},"publisher":"Springer Nature","scopus_import":"1","status":"public","day":"01","article_type":"letter_note"},{"_id":"18920","ddc":["570"],"article_processing_charge":"Yes","type":"journal_article","date_created":"2025-01-27T14:32:34Z","issue":"15","intvolume":"        10","abstract":[{"text":"The globally distributed marine alga Emiliania huxleyi has cooling effect on the Earth’s climate. The population density of E. huxleyi is restricted by Nucleocytoviricota viruses, including E. huxleyi virus 201 (EhV-201). Despite the impact of E. huxleyi viruses on the climate, there is limited information about their structure and replication. Here, we show that the dsDNA genome inside the EhV-201 virion is protected by an inner membrane, capsid, and outer membrane. EhV-201 virions infect E. huxleyi by using fivefold vertices to bind to and fuse the virus’ inner membrane with the cell plasma membrane. Progeny virions assemble in the cytoplasm at the surface of endoplasmic reticulum–derived membrane segments. Genome packaging initiates synchronously with the capsid assembly and completes through an aperture in the forming capsid. The genome-filled capsids acquire an outer membrane by budding into intracellular vesicles. EhV-201 infection induces a loss of surface protective layers from E. huxleyi cells, which enables the continuous release of virions by exocytosis.","lang":"eng"}],"date_published":"2024-04-01T00:00:00Z","title":"Structure and replication cycle of a virus infecting climate-modulating alga Emiliania huxleyi","date_updated":"2025-05-14T09:29:04Z","doi":"10.1126/sciadv.adk1954","publication_identifier":{"eissn":["2375-2548"]},"language":[{"iso":"eng"}],"OA_place":"publisher","publication":"Science Advances","publication_status":"published","DOAJ_listed":"1","oa":1,"pmid":1,"acknowledgement":"We acknowledge (i) the Cryo-Electron Microscopy and Tomography Core Facility and Proteomics Core Facility of the Central European Institute of Technology (CEITEC), Masaryk University, supported by the Ministry of Education, Youth, and Sports of the Czech Republic (grant LM2018127); (ii) the Cellular Imaging Core Facility supported by the Czech-BioImaging large RI project (LM2018129 funded by MEYS CR); and (iii) Plant Sciences Core Facility for support with obtaining scientific data presented here. We acknowledge support from the project National Institute of Virology and Bacteriology (Program EXCELES, ID project no. LX22NPO5103), funded by the European Union - Next Generation EU. This work received funding from the Czech Science Foundation grant GX 19-259882X to P.P., from European Regional Development Fund-Project “MSCAfellow2@MUNI” (no. CZ.02.2.69/0.0/0.0/18_070/0009846) to C.R.B., and from Brno PhD talent scholarship funded by Brno city municipality to M.H.","author":[{"full_name":"Homola, Miroslav","last_name":"Homola","first_name":"Miroslav"},{"first_name":"Renate Carina","last_name":"Büttner","id":"3b7984c9-17ff-11ed-b6fe-f943c4a5b626","full_name":"Büttner, Renate Carina"},{"full_name":"Füzik, Tibor","first_name":"Tibor","last_name":"Füzik"},{"last_name":"Křepelka","first_name":"Pavel","full_name":"Křepelka, Pavel"},{"last_name":"Holbová","first_name":"Radka","full_name":"Holbová, Radka"},{"first_name":"Jiří","last_name":"Nováček","full_name":"Nováček, Jiří"},{"full_name":"Chaillet, Marten L.","first_name":"Marten L.","last_name":"Chaillet"},{"full_name":"Žák, Jakub","first_name":"Jakub","last_name":"Žák"},{"first_name":"Danyil","last_name":"Grybchuk","full_name":"Grybchuk, Danyil"},{"last_name":"Förster","first_name":"Friedrich","full_name":"Förster, Friedrich"},{"first_name":"William H.","last_name":"Wilson","full_name":"Wilson, William H."},{"full_name":"Schroeder, Declan C.","last_name":"Schroeder","first_name":"Declan C."},{"first_name":"Pavel","last_name":"Plevka","full_name":"Plevka, Pavel"}],"file_date_updated":"2025-01-27T14:40:08Z","oa_version":"Published Version","article_number":"eadk1954 ","year":"2024","OA_type":"gold","quality_controlled":"1","article_type":"original","day":"01","has_accepted_license":"1","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"related_material":{"link":[{"url":" https://github.com/fuzikt/tomostarpy.","relation":"software"}]},"status":"public","scopus_import":"1","publisher":"American Association for the Advancement of Science","file":[{"relation":"main_file","success":1,"content_type":"application/pdf","date_created":"2025-01-27T14:40:08Z","date_updated":"2025-01-27T14:40:08Z","creator":"dernst","file_name":"2024_ScienceAdv_Homola.pdf","file_id":"18921","checksum":"291dd7ceccbe6bfd8e0a9157584f88e9","file_size":40623405,"access_level":"open_access"}],"citation":{"short":"M. Homola, R.C. Büttner, T. Füzik, P. Křepelka, R. Holbová, J. Nováček, M.L. Chaillet, J. Žák, D. Grybchuk, F. Förster, W.H. Wilson, D.C. Schroeder, P. Plevka, Science Advances 10 (2024).","mla":"Homola, Miroslav, et al. “Structure and Replication Cycle of a Virus Infecting Climate-Modulating Alga Emiliania Huxleyi.” <i>Science Advances</i>, vol. 10, no. 15, eadk1954, American Association for the Advancement of Science, 2024, doi:<a href=\"https://doi.org/10.1126/sciadv.adk1954\">10.1126/sciadv.adk1954</a>.","ista":"Homola M, Büttner RC, Füzik T, Křepelka P, Holbová R, Nováček J, Chaillet ML, Žák J, Grybchuk D, Förster F, Wilson WH, Schroeder DC, Plevka P. 2024. Structure and replication cycle of a virus infecting climate-modulating alga Emiliania huxleyi. Science Advances. 10(15), eadk1954.","apa":"Homola, M., Büttner, R. C., Füzik, T., Křepelka, P., Holbová, R., Nováček, J., … Plevka, P. (2024). Structure and replication cycle of a virus infecting climate-modulating alga Emiliania huxleyi. <i>Science Advances</i>. American Association for the Advancement of Science. <a href=\"https://doi.org/10.1126/sciadv.adk1954\">https://doi.org/10.1126/sciadv.adk1954</a>","chicago":"Homola, Miroslav, Renate Carina Büttner, Tibor Füzik, Pavel Křepelka, Radka Holbová, Jiří Nováček, Marten L. Chaillet, et al. “Structure and Replication Cycle of a Virus Infecting Climate-Modulating Alga Emiliania Huxleyi.” <i>Science Advances</i>. American Association for the Advancement of Science, 2024. <a href=\"https://doi.org/10.1126/sciadv.adk1954\">https://doi.org/10.1126/sciadv.adk1954</a>.","ama":"Homola M, Büttner RC, Füzik T, et al. Structure and replication cycle of a virus infecting climate-modulating alga Emiliania huxleyi. <i>Science Advances</i>. 2024;10(15). doi:<a href=\"https://doi.org/10.1126/sciadv.adk1954\">10.1126/sciadv.adk1954</a>","ieee":"M. Homola <i>et al.</i>, “Structure and replication cycle of a virus infecting climate-modulating alga Emiliania huxleyi,” <i>Science Advances</i>, vol. 10, no. 15. American Association for the Advancement of Science, 2024."},"volume":10,"external_id":{"pmid":["38598627"]},"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","department":[{"_id":"EM-Fac"}],"month":"04"},{"acknowledgement":"Giuseppe F. Italiano was partially supported by the Italian Ministry of\r\nUniversity and Reseach under PRIN Project n. 2022TS4Y3N - EXPAND: scalable algorithms for EXPloratory Analyses of heterogeneous and dynamic Networked Data.\r\n","language":[{"iso":"eng"}],"publication_status":"published","publication":"65th Annual Symposium on Foundations of Computer Science","date_updated":"2025-09-09T12:08:47Z","publication_identifier":{"isbn":["9798331516741"]},"doi":"10.1109/focs61266.2024.00015","abstract":[{"lang":"eng","text":"Let G be a directed graph with m edges and n vertices. We present a deterministic linear-time algorithm for computing the 3-edge-connected components of G. This is a significant improvement over the previous best bound by Georgiadis et al. [SODA 2023], which is Õ(m√{m}) and randomized. Our result is based on a novel characterization of 2-edge cuts in directed graphs and on a new technique that exploits the concept of divergent spanning trees and 2-connectivity-light graphs, and requires a careful modification of the minset-poset technique of Gabow [TALG 2016]. As a side result, our new technique yields also an oracle for providing in constant time a minimum edge-cut for any two vertices that are not 3-edge-connected. The oracle uses space O(n) and can be built in O(mlog n) time: given two query vertices, it determines in constant time whether they are 3-edge-connected, or provides a k-edge cut, with k≤ 2, that separates them."}],"title":"Computing the 3-edge-connected components of directed graphs in linear time","date_published":"2024-10-01T00:00:00Z","corr_author":"1","type":"conference","page":"62-85","date_created":"2025-01-27T14:50:23Z","_id":"18922","article_processing_charge":"No","conference":{"end_date":"2024-10-30","start_date":"2024-10-27","location":"Chicago, IL, United States","name":"FOCS: Foundations of Computer Science"},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","external_id":{"isi":["001419526400005"]},"month":"10","department":[{"_id":"MoHe"}],"citation":{"mla":"Georgiadis, Loukas, et al. “Computing the 3-Edge-Connected Components of Directed Graphs in Linear Time.” <i>65th Annual Symposium on Foundations of Computer Science</i>, IEEE, 2024, pp. 62–85, doi:<a href=\"https://doi.org/10.1109/focs61266.2024.00015\">10.1109/focs61266.2024.00015</a>.","short":"L. Georgiadis, G.F. Italiano, E. Kosinas, in:, 65th Annual Symposium on Foundations of Computer Science, IEEE, 2024, pp. 62–85.","apa":"Georgiadis, L., Italiano, G. F., &#38; Kosinas, E. (2024). Computing the 3-edge-connected components of directed graphs in linear time. In <i>65th Annual Symposium on Foundations of Computer Science</i> (pp. 62–85). Chicago, IL, United States: IEEE. <a href=\"https://doi.org/10.1109/focs61266.2024.00015\">https://doi.org/10.1109/focs61266.2024.00015</a>","ieee":"L. Georgiadis, G. F. Italiano, and E. Kosinas, “Computing the 3-edge-connected components of directed graphs in linear time,” in <i>65th Annual Symposium on Foundations of Computer Science</i>, Chicago, IL, United States, 2024, pp. 62–85.","chicago":"Georgiadis, Loukas, Giuseppe F. Italiano, and Evangelos Kosinas. “Computing the 3-Edge-Connected Components of Directed Graphs in Linear Time.” In <i>65th Annual Symposium on Foundations of Computer Science</i>, 62–85. IEEE, 2024. <a href=\"https://doi.org/10.1109/focs61266.2024.00015\">https://doi.org/10.1109/focs61266.2024.00015</a>.","ama":"Georgiadis L, Italiano GF, Kosinas E. Computing the 3-edge-connected components of directed graphs in linear time. In: <i>65th Annual Symposium on Foundations of Computer Science</i>. IEEE; 2024:62-85. doi:<a href=\"https://doi.org/10.1109/focs61266.2024.00015\">10.1109/focs61266.2024.00015</a>","ista":"Georgiadis L, Italiano GF, Kosinas E. 2024. Computing the 3-edge-connected components of directed graphs in linear time. 65th Annual Symposium on Foundations of Computer Science. FOCS: Foundations of Computer Science, 62–85."},"publisher":"IEEE","status":"public","scopus_import":"1","day":"01","quality_controlled":"1","oa_version":"None","OA_type":"closed access","year":"2024","isi":1,"author":[{"full_name":"Georgiadis, Loukas","last_name":"Georgiadis","first_name":"Loukas"},{"full_name":"Italiano, Giuseppe F.","last_name":"Italiano","first_name":"Giuseppe F."},{"first_name":"Evangelos","last_name":"Kosinas","id":"4c7f9625-dbbc-11ee-9d86-bdcc2db5a949","full_name":"Kosinas, Evangelos"}]},{"doi":"10.1109/noms59830.2024.10575579","publication_identifier":{"eissn":["2374-9709"],"isbn":["9798350327946"]},"date_updated":"2025-11-05T07:34:27Z","date_published":"2024-05-01T00:00:00Z","title":"Congestion-free rerouting of network flows: Hardness and an FPT algorithm","abstract":[{"text":"Given the increasingly stringent requirements on the performance and efficiency of communication networks, over the last years, great efforts have been made to render networks more flexible and programmable. In particular, modern networks support a flexible rerouting of flows, e.g., depending on the dynamically changing traffic or network conditions. However, the underlying algorithmic problems are still not well-understood today.In this paper, we revisit the k-Network Flow Update problem that asks for a schedule to reroute k unsplittable flows from their current paths to the given new paths, in a congestion-free manner in a capacitated network. We show that the problem is already NP-hard for three acyclic flows on simple directed graphs. Our main contribution is an efficient algorithm for sparse networks; specifically the algorithm is fixed parameter tractable in the number of flows and the treewidth of a graph that is the union of all flows. Our results also settle the open complexity question in the literature.","lang":"eng"}],"acknowledgement":"Research was supported by the Austrian Science Fund (FWF), project I 5025-N (DELTA), 2020-2024. Esra Ceylan’s research was supported by FFG, FEMtech Praktika für Studentinnen. Jakub Svoboda and Krishnendu Chatterjee were supported by the European Research Council (ERC) CoG 863818 (ForM-SMArt).","main_file_link":[{"url":"https://schmiste.github.io/noms24.pdf","open_access":"1"}],"publication_status":"published","publication":"NOMS 2024-2024 IEEE Network Operations and Management Symposium","oa":1,"language":[{"iso":"eng"}],"OA_place":"other","date_created":"2025-01-27T15:06:45Z","type":"conference","article_processing_charge":"No","_id":"18925","corr_author":"1","publisher":"IEEE","status":"public","ec_funded":1,"scopus_import":"1","day":"01","department":[{"_id":"KrCh"}],"month":"05","external_id":{"isi":["001270140300143"]},"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","conference":{"end_date":"2024-05-10","start_date":"2024-05-06","location":"Seoul, Republic of Korea","name":"NOMS: Network Operations and Management Symposiu "},"citation":{"short":"E. Ceylan, K. Chatterjee, S. Schmid, J. Svoboda, in:, NOMS 2024-2024 IEEE Network Operations and Management Symposium, IEEE, 2024.","mla":"Ceylan, Esra, et al. “Congestion-Free Rerouting of Network Flows: Hardness and an FPT Algorithm.” <i>NOMS 2024-2024 IEEE Network Operations and Management Symposium</i>, IEEE, 2024, doi:<a href=\"https://doi.org/10.1109/noms59830.2024.10575579\">10.1109/noms59830.2024.10575579</a>.","ista":"Ceylan E, Chatterjee K, Schmid S, Svoboda J. 2024. Congestion-free rerouting of network flows: Hardness and an FPT algorithm. NOMS 2024-2024 IEEE Network Operations and Management Symposium. NOMS: Network Operations and Management Symposiu .","ieee":"E. Ceylan, K. Chatterjee, S. Schmid, and J. Svoboda, “Congestion-free rerouting of network flows: Hardness and an FPT algorithm,” in <i>NOMS 2024-2024 IEEE Network Operations and Management Symposium</i>, Seoul, Republic of Korea, 2024.","ama":"Ceylan E, Chatterjee K, Schmid S, Svoboda J. Congestion-free rerouting of network flows: Hardness and an FPT algorithm. In: <i>NOMS 2024-2024 IEEE Network Operations and Management Symposium</i>. IEEE; 2024. doi:<a href=\"https://doi.org/10.1109/noms59830.2024.10575579\">10.1109/noms59830.2024.10575579</a>","chicago":"Ceylan, Esra, Krishnendu Chatterjee, Stefan Schmid, and Jakub Svoboda. “Congestion-Free Rerouting of Network Flows: Hardness and an FPT Algorithm.” In <i>NOMS 2024-2024 IEEE Network Operations and Management Symposium</i>. IEEE, 2024. <a href=\"https://doi.org/10.1109/noms59830.2024.10575579\">https://doi.org/10.1109/noms59830.2024.10575579</a>.","apa":"Ceylan, E., Chatterjee, K., Schmid, S., &#38; Svoboda, J. (2024). Congestion-free rerouting of network flows: Hardness and an FPT algorithm. In <i>NOMS 2024-2024 IEEE Network Operations and Management Symposium</i>. Seoul, Republic of Korea: IEEE. <a href=\"https://doi.org/10.1109/noms59830.2024.10575579\">https://doi.org/10.1109/noms59830.2024.10575579</a>"},"isi":1,"author":[{"last_name":"Ceylan","first_name":"Esra","full_name":"Ceylan, Esra","id":"cb1ca1d8-dcc0-11ef-baa5-9f1b3ef75933"},{"full_name":"Chatterjee, Krishnendu","id":"2E5DCA20-F248-11E8-B48F-1D18A9856A87","last_name":"Chatterjee","first_name":"Krishnendu","orcid":"0000-0002-4561-241X"},{"last_name":"Schmid","first_name":"Stefan","full_name":"Schmid, Stefan"},{"full_name":"Svoboda, Jakub","id":"130759D2-D7DD-11E9-87D2-DE0DE6697425","last_name":"Svoboda","orcid":"0000-0002-1419-3267","first_name":"Jakub"}],"project":[{"call_identifier":"H2020","name":"Formal Methods for Stochastic Models: Algorithms and Applications","grant_number":"863818","_id":"0599E47C-7A3F-11EA-A408-12923DDC885E"},{"grant_number":"894907","name":"Graphical Games","_id":"bd622a5c-d553-11ed-ba76-bae280ba8aff"}],"quality_controlled":"1","year":"2024","OA_type":"green","oa_version":"Submitted Version"},{"abstract":[{"text":"We study weak solutions to mean curvature flow satisfying Young’s angle condition for general contact angles α ∈ (0, π). First, we construct BV solutions by using the Allen-Cahn approximation with boundary contact energy as proposed by Owen and Sternberg. Second, we prove the weak-strong uniqueness and stability for this solution concept. The main ingredient for both results is a relative energy, which can also be interpreted as a tilt excess. ","lang":"eng"}],"date_published":"2024-01-01T00:00:00Z","title":"BV solutions for mean curvature flow with constant angle: Allen-Cahn approximation and weak-strong uniqueness","date_updated":"2025-01-27T15:23:57Z","doi":"10.1512/iumj.2024.73.9701","publication_identifier":{"issn":["0022-2518"]},"language":[{"iso":"eng"}],"OA_place":"repository","publication":"Indiana University Mathematics Journal","publication_status":"published","oa":1,"main_file_link":[{"url":"https://doi.org/10.48550/arXiv.2112.11150","open_access":"1"}],"_id":"18926","arxiv":1,"article_processing_charge":"No","type":"journal_article","date_created":"2025-01-27T15:20:19Z","page":"111-148","issue":"1","intvolume":"        73","corr_author":"1","day":"01","article_type":"original","scopus_import":"1","publisher":"Indiana University Mathematics Journal","status":"public","citation":{"ista":"Hensel S, Laux T. 2024. BV solutions for mean curvature flow with constant angle: Allen-Cahn approximation and weak-strong uniqueness. Indiana University Mathematics Journal. 73(1), 111–148.","ieee":"S. Hensel and T. Laux, “BV solutions for mean curvature flow with constant angle: Allen-Cahn approximation and weak-strong uniqueness,” <i>Indiana University Mathematics Journal</i>, vol. 73, no. 1. Indiana University Mathematics Journal, pp. 111–148, 2024.","ama":"Hensel S, Laux T. BV solutions for mean curvature flow with constant angle: Allen-Cahn approximation and weak-strong uniqueness. <i>Indiana University Mathematics Journal</i>. 2024;73(1):111-148. doi:<a href=\"https://doi.org/10.1512/iumj.2024.73.9701\">10.1512/iumj.2024.73.9701</a>","chicago":"Hensel, Sebastian, and Tim Laux. “BV Solutions for Mean Curvature Flow with Constant Angle: Allen-Cahn Approximation and Weak-Strong Uniqueness.” <i>Indiana University Mathematics Journal</i>. Indiana University Mathematics Journal, 2024. <a href=\"https://doi.org/10.1512/iumj.2024.73.9701\">https://doi.org/10.1512/iumj.2024.73.9701</a>.","apa":"Hensel, S., &#38; Laux, T. (2024). BV solutions for mean curvature flow with constant angle: Allen-Cahn approximation and weak-strong uniqueness. <i>Indiana University Mathematics Journal</i>. Indiana University Mathematics Journal. <a href=\"https://doi.org/10.1512/iumj.2024.73.9701\">https://doi.org/10.1512/iumj.2024.73.9701</a>","short":"S. Hensel, T. Laux, Indiana University Mathematics Journal 73 (2024) 111–148.","mla":"Hensel, Sebastian, and Tim Laux. “BV Solutions for Mean Curvature Flow with Constant Angle: Allen-Cahn Approximation and Weak-Strong Uniqueness.” <i>Indiana University Mathematics Journal</i>, vol. 73, no. 1, Indiana University Mathematics Journal, 2024, pp. 111–48, doi:<a href=\"https://doi.org/10.1512/iumj.2024.73.9701\">10.1512/iumj.2024.73.9701</a>."},"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","external_id":{"arxiv":["2112.11150"]},"volume":73,"department":[{"_id":"JuFi"}],"month":"01","author":[{"first_name":"Sebastian","orcid":"0000-0001-7252-8072","last_name":"Hensel","id":"4D23B7DA-F248-11E8-B48F-1D18A9856A87","full_name":"Hensel, Sebastian"},{"first_name":"Tim","last_name":"Laux","full_name":"Laux, Tim"}],"oa_version":"Preprint","year":"2024","OA_type":"green","quality_controlled":"1"},{"corr_author":"1","intvolume":"       287","article_processing_charge":"Yes","arxiv":1,"ddc":["000"],"_id":"18928","page":"62:1-62:25","date_created":"2025-01-27T15:33:42Z","type":"conference","oa":1,"alternative_title":["LIPIcs"],"publication":"15th Innovations in Theoretical Computer Science Conference","publication_status":"published","OA_place":"publisher","language":[{"iso":"eng"}],"acknowledgement":"Henzinger, Monika: This project has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (Grant agreement No. 101019564) and the Austrian Science Fund (FWF) project Z 422-N, project I 5982-N, and project P 33775-N, with additional funding from the netidee SCIENCE Stiftung, 2020-2024.\r\nSaha, Barna: This project is partially supported by NSF grants 1652303, 1909046, 2112533, and HDR TRIPODS Phase II grant 2217058.\r\nWe would like to thank Andrea Lincoln for many helpful discussions and insightful comments.","title":"On the complexity of algorithms with predictions for dynamic graph problems","date_published":"2024-01-24T00:00:00Z","abstract":[{"lang":"eng","text":"Algorithms with predictions is a new research direction that leverages machine learned predictions for algorithm design. So far a plethora of recent works have incorporated predictions to improve on worst-case bounds for online problems. In this paper, we initiate the study of complexity of dynamic data structures with predictions, including dynamic graph algorithms. Unlike online algorithms, the goal in dynamic data structures is to maintain the solution efficiently with every update.\r\nWe investigate three natural models of prediction: (1) δ-accurate predictions where each predicted request matches the true request with probability δ, (2) list-accurate predictions where a true request comes from a list of possible requests, and (3) bounded delay predictions where the true requests are a permutation of the predicted requests. We give general reductions among the prediction models, showing that bounded delay is the strongest prediction model, followed by list-accurate, and δ-accurate.\r\nFurther, we identify two broad problem classes based on lower bounds due to the Online Matrix Vector (OMv) conjecture. Specifically, we show that locally correctable dynamic problems have strong conditional lower bounds for list-accurate predictions that are equivalent to the non-prediction setting, unless list-accurate predictions are perfect. Moreover, we show that locally reducible dynamic problems have time complexity that degrades gracefully with the quality of bounded delay predictions. We categorize problems with known OMv lower bounds accordingly and give several upper bounds in the delay model that show that our lower bounds are almost tight.\r\nWe note that concurrent work by v.d.Brand et al. [SODA '24] and Liu and Srinivas [arXiv:2307.08890] independently study dynamic graph algorithms with predictions, but their work is mostly focused on showing upper bounds."}],"publication_identifier":{"eissn":["1868-8969"],"isbn":["9783959773096"]},"doi":"10.4230/LIPIcs.ITCS.2024.62","date_updated":"2025-09-09T12:11:33Z","OA_type":"gold","year":"2024","oa_version":"Published Version","file_date_updated":"2025-01-27T15:33:24Z","quality_controlled":"1","project":[{"_id":"bd9ca328-d553-11ed-ba76-dc4f890cfe62","name":"The design and evaluation of modern fully dynamic data structures","grant_number":"101019564","call_identifier":"H2020"},{"_id":"34def286-11ca-11ed-8bc3-da5948e1613c","grant_number":"Z00422","name":"Efficient algorithms"},{"_id":"bda196b2-d553-11ed-ba76-8e8ee6c21103","grant_number":"I05982","name":"Static and Dynamic Hierarchical Graph Decompositions"},{"grant_number":"P33775","name":"Fast Algorithms for a Reactive Network Layer","_id":"bd9e3a2e-d553-11ed-ba76-8aa684ce17fe"}],"author":[{"id":"540c9bbd-f2de-11ec-812d-d04a5be85630","full_name":"Henzinger, Monika H","orcid":"0000-0002-5008-6530","first_name":"Monika H","last_name":"Henzinger"},{"first_name":"Barna","last_name":"Saha","full_name":"Saha, Barna"},{"last_name":"Seybold","first_name":"Martin P.","full_name":"Seybold, Martin P."},{"last_name":"Ye","first_name":"Christopher","full_name":"Ye, Christopher"}],"isi":1,"citation":{"ista":"Henzinger M, Saha B, Seybold MP, Ye C. 2024. On the complexity of algorithms with predictions for dynamic graph problems. 15th Innovations in Theoretical Computer Science Conference. ITCS: Innovations in Theoretical Computer Science, LIPIcs, vol. 287, 62:1-62:25.","ieee":"M. Henzinger, B. Saha, M. P. Seybold, and C. Ye, “On the complexity of algorithms with predictions for dynamic graph problems,” in <i>15th Innovations in Theoretical Computer Science Conference</i>, Berkeley, CA, United States, 2024, vol. 287, p. 62:1-62:25.","chicago":"Henzinger, Monika, Barna Saha, Martin P. Seybold, and Christopher Ye. “On the Complexity of Algorithms with Predictions for Dynamic Graph Problems.” In <i>15th Innovations in Theoretical Computer Science Conference</i>, 287:62:1-62:25. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2024. <a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2024.62\">https://doi.org/10.4230/LIPIcs.ITCS.2024.62</a>.","ama":"Henzinger M, Saha B, Seybold MP, Ye C. On the complexity of algorithms with predictions for dynamic graph problems. In: <i>15th Innovations in Theoretical Computer Science Conference</i>. Vol 287. Schloss Dagstuhl - Leibniz-Zentrum für Informatik; 2024:62:1-62:25. doi:<a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2024.62\">10.4230/LIPIcs.ITCS.2024.62</a>","apa":"Henzinger, M., Saha, B., Seybold, M. P., &#38; Ye, C. (2024). On the complexity of algorithms with predictions for dynamic graph problems. In <i>15th Innovations in Theoretical Computer Science Conference</i> (Vol. 287, p. 62:1-62:25). Berkeley, CA, United States: Schloss Dagstuhl - Leibniz-Zentrum für Informatik. <a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2024.62\">https://doi.org/10.4230/LIPIcs.ITCS.2024.62</a>","short":"M. Henzinger, B. Saha, M.P. Seybold, C. Ye, in:, 15th Innovations in Theoretical Computer Science Conference, Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2024, p. 62:1-62:25.","mla":"Henzinger, Monika, et al. “On the Complexity of Algorithms with Predictions for Dynamic Graph Problems.” <i>15th Innovations in Theoretical Computer Science Conference</i>, vol. 287, Schloss Dagstuhl - Leibniz-Zentrum für Informatik, 2024, p. 62:1-62:25, doi:<a href=\"https://doi.org/10.4230/LIPIcs.ITCS.2024.62\">10.4230/LIPIcs.ITCS.2024.62</a>."},"month":"01","department":[{"_id":"MoHe"}],"conference":{"start_date":"2024-01-30","end_date":"2024-02-02","name":"ITCS: Innovations in Theoretical Computer Science","location":"Berkeley, CA, United States"},"volume":287,"external_id":{"isi":["001300389400062"],"arxiv":["2307.16771"]},"user_id":"317138e5-6ab7-11ef-aa6d-ffef3953e345","day":"24","publisher":"Schloss Dagstuhl - Leibniz-Zentrum für Informatik","ec_funded":1,"status":"public","file":[{"file_name":"2024_LIPICs_HenzingerMo.pdf","creator":"dernst","checksum":"15085a5b3697a408b92a4a7a27293927","file_id":"18929","file_size":1084372,"access_level":"open_access","content_type":"application/pdf","date_created":"2025-01-27T15:33:24Z","date_updated":"2025-01-27T15:33:24Z","relation":"main_file","success":1}],"scopus_import":"1","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"has_accepted_license":"1"},{"department":[{"_id":"FlSc"}],"month":"03","volume":35,"external_id":{"pmid":["38117593"]},"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","citation":{"mla":"Sárkány, Zsuzsa, et al. “NAGPKin: Nucleation-and-Growth Parameters from the Kinetics of Protein Phase Separation.” <i>Molecular Biology of the Cell</i>, vol. 35, no. 3, mr1, American Society for Cell Biology, 2024, doi:<a href=\"https://doi.org/10.1091/mbc.e23-07-0289\">10.1091/mbc.e23-07-0289</a>.","short":"Z. Sárkány, F. Figueiredo, S. Macedo-Ribeiro, P.M. Martins, Molecular Biology of the Cell 35 (2024).","chicago":"Sárkány, Zsuzsa, Francisco Figueiredo, Sandra Macedo-Ribeiro, and Pedro M. Martins. “NAGPKin: Nucleation-and-Growth Parameters from the Kinetics of Protein Phase Separation.” <i>Molecular Biology of the Cell</i>. American Society for Cell Biology, 2024. <a href=\"https://doi.org/10.1091/mbc.e23-07-0289\">https://doi.org/10.1091/mbc.e23-07-0289</a>.","ieee":"Z. Sárkány, F. Figueiredo, S. Macedo-Ribeiro, and P. M. Martins, “NAGPKin: Nucleation-and-growth parameters from the kinetics of protein phase separation,” <i>Molecular Biology of the Cell</i>, vol. 35, no. 3. American Society for Cell Biology, 2024.","ama":"Sárkány Z, Figueiredo F, Macedo-Ribeiro S, Martins PM. NAGPKin: Nucleation-and-growth parameters from the kinetics of protein phase separation. <i>Molecular Biology of the Cell</i>. 2024;35(3). doi:<a href=\"https://doi.org/10.1091/mbc.e23-07-0289\">10.1091/mbc.e23-07-0289</a>","apa":"Sárkány, Z., Figueiredo, F., Macedo-Ribeiro, S., &#38; Martins, P. M. (2024). NAGPKin: Nucleation-and-growth parameters from the kinetics of protein phase separation. <i>Molecular Biology of the Cell</i>. American Society for Cell Biology. <a href=\"https://doi.org/10.1091/mbc.e23-07-0289\">https://doi.org/10.1091/mbc.e23-07-0289</a>","ista":"Sárkány Z, Figueiredo F, Macedo-Ribeiro S, Martins PM. 2024. NAGPKin: Nucleation-and-growth parameters from the kinetics of protein phase separation. Molecular Biology of the Cell. 35(3), mr1."},"tmp":{"short":"CC BY-NC-SA (4.0)","image":"/images/cc_by_nc_sa.png","name":"Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0)","legal_code_url":"https://creativecommons.org/licenses/by-nc-sa/4.0/legalcode"},"status":"public","file":[{"relation":"main_file","success":1,"file_name":"2024_MolecularBioCell_Sarkany.pdf","creator":"dernst","file_id":"18935","checksum":"d7deb6390f294da69321cfbe352ed611","access_level":"open_access","file_size":1699180,"content_type":"application/pdf","date_created":"2025-01-29T08:12:11Z","date_updated":"2025-01-29T08:12:11Z"}],"publisher":"American Society for Cell Biology","scopus_import":"1","has_accepted_license":"1","day":"01","article_type":"original","quality_controlled":"1","year":"2024","OA_type":"hybrid","file_date_updated":"2025-01-29T08:12:11Z","oa_version":"Published Version","article_number":"mr1","author":[{"full_name":"Sárkány, Zsuzsa","first_name":"Zsuzsa","last_name":"Sárkány"},{"id":"8125cbe2-9661-11ed-a754-afe96018f37d","full_name":"Figueiredo, Francisco","first_name":"Francisco","last_name":"Figueiredo"},{"full_name":"Macedo-Ribeiro, Sandra","first_name":"Sandra","last_name":"Macedo-Ribeiro"},{"full_name":"Martins, Pedro M.","last_name":"Martins","first_name":"Pedro M."}],"acknowledgement":"We thank Professor José Paulo Leal, Department of Computer Science − Faculdade de Ciências da Universidade do Porto, for his invaluable help during the Implementation of NAGPKin. This work is part of a project that has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement no. 952334 (PhasAGE). This research was funded by the Portuguese Foundation for Science and Technology (FCT) in the framework of project PTDC/QUI-COL/2444/2021.","pmid":1,"publication_status":"published","publication":"Molecular Biology of the Cell","oa":1,"language":[{"iso":"eng"}],"OA_place":"publisher","doi":"10.1091/mbc.e23-07-0289","publication_identifier":{"eissn":["1939-4586"],"issn":["1059-1524"]},"date_updated":"2025-01-29T08:16:20Z","date_published":"2024-03-01T00:00:00Z","title":"NAGPKin: Nucleation-and-growth parameters from the kinetics of protein phase separation","abstract":[{"text":"The assembly of biomolecular condensate in eukaryotic cells and the accumulation of amyloid deposits in neurons are processes involving the nucleation and growth (NAG) of new protein phases. To therapeutically target protein phase separation, drug candidates are tested in in vitro assays that monitor the increase in the mass or size of the new phase. Limited mechanistic insight is, however, provided if empirical or untestable kinetic models are fitted to these progress curves. Here we present the web server NAGPKin that quantifies NAG rates using mass-based or size-based progress curves as the input data. A report is generated containing the fitted NAG parameters and elucidating the phase separation mechanisms at play. The NAG parameters can be used to predict particle size distributions of, for example, protein droplets formed by liquid-liquid phase separation (LLPS) or amyloid fibrils formed by protein aggregation. Because minimal intervention is required from the user, NAGPKin is a good platform for standardized reporting of LLPS and protein self-assembly data. NAGPKin is useful for drug discovery as well as for fundamental studies on protein phase separation. NAGPKin is freely available (no login required) at https://nagpkin.i3s.up.pt .","lang":"eng"}],"license":"https://creativecommons.org/licenses/by-nc-sa/4.0/","intvolume":"        35","issue":"3","date_created":"2025-01-29T07:58:40Z","type":"journal_article","article_processing_charge":"Yes (in subscription journal)","ddc":["570"],"_id":"18934"},{"oa_version":"None","article_number":"416018","OA_type":"closed access","year":"2024","quality_controlled":"1","author":[{"last_name":"Ray","first_name":"Sujata Kumari","full_name":"Ray, Sujata Kumari"},{"full_name":"Pati, Anupama","last_name":"Pati","first_name":"Anupama"},{"first_name":"Payala","last_name":"Sahoo","full_name":"Sahoo, Payala"},{"first_name":"A.K.","last_name":"Sahoo","full_name":"Sahoo, A.K."},{"id":"12d625da-9cb3-11ed-9667-af09d37d3f0a","full_name":"Singh, Saurabh","first_name":"Saurabh","orcid":"0000-0003-2209-5269","last_name":"Singh"},{"full_name":"Takeuchi, Tsunehiro","last_name":"Takeuchi","first_name":"Tsunehiro"},{"full_name":"Dash, S.","first_name":"S.","last_name":"Dash"}],"citation":{"short":"S.K. Ray, A. Pati, P. Sahoo, A.K. Sahoo, S. Singh, T. Takeuchi, S. Dash, Physica B: Condensed Matter 685 (2024).","mla":"Ray, Sujata Kumari, et al. “Tunable Magnetoelectronic Properties in Bi3+ Substituted YCrO3.” <i>Physica B: Condensed Matter</i>, vol. 685, 416018, Elsevier, 2024, doi:<a href=\"https://doi.org/10.1016/j.physb.2024.416018\">10.1016/j.physb.2024.416018</a>.","ista":"Ray SK, Pati A, Sahoo P, Sahoo AK, Singh S, Takeuchi T, Dash S. 2024. Tunable magnetoelectronic properties in Bi3+ substituted YCrO3. Physica B: Condensed Matter. 685, 416018.","chicago":"Ray, Sujata Kumari, Anupama Pati, Payala Sahoo, A.K. Sahoo, Saurabh Singh, Tsunehiro Takeuchi, and S. Dash. “Tunable Magnetoelectronic Properties in Bi3+ Substituted YCrO3.” <i>Physica B: Condensed Matter</i>. Elsevier, 2024. <a href=\"https://doi.org/10.1016/j.physb.2024.416018\">https://doi.org/10.1016/j.physb.2024.416018</a>.","ama":"Ray SK, Pati A, Sahoo P, et al. Tunable magnetoelectronic properties in Bi3+ substituted YCrO3. <i>Physica B: Condensed Matter</i>. 2024;685. doi:<a href=\"https://doi.org/10.1016/j.physb.2024.416018\">10.1016/j.physb.2024.416018</a>","ieee":"S. K. Ray <i>et al.</i>, “Tunable magnetoelectronic properties in Bi3+ substituted YCrO3,” <i>Physica B: Condensed Matter</i>, vol. 685. Elsevier, 2024.","apa":"Ray, S. K., Pati, A., Sahoo, P., Sahoo, A. K., Singh, S., Takeuchi, T., &#38; Dash, S. (2024). Tunable magnetoelectronic properties in Bi3+ substituted YCrO3. <i>Physica B: Condensed Matter</i>. Elsevier. <a href=\"https://doi.org/10.1016/j.physb.2024.416018\">https://doi.org/10.1016/j.physb.2024.416018</a>"},"volume":685,"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","month":"07","department":[{"_id":"MaIb"}],"article_type":"original","day":"15","scopus_import":"1","publisher":"Elsevier","status":"public","intvolume":"       685","_id":"18937","article_processing_charge":"No","type":"journal_article","date_created":"2025-01-29T08:33:04Z","language":[{"iso":"eng"}],"publication":"Physica B: Condensed Matter","publication_status":"published","acknowledgement":"The authors would like to acknowledge MHRD, Government of India for financial support. The author is also thankful to RRCAT, Indore for providing XPS beamline-14 of Indus II to conduct experimental work.","abstract":[{"lang":"eng","text":"A detailed structural, magnetic as well as dielectric dynamics study is carried out to investigate the influence of Bi3+ on YCrO3. All the samples crystalize in orthorhombic structure with Pnma symmetry and the grains are mostly stretched with Bi. A coexisting tunable fraction of both antiferromagnetic (AFM) and weak ferromagnetic (WFM) phases is acquired by the system down to Low-T. An abnormal negative magnetization in zero field is correlated to the competition among AFM and WFM phases. Maximum magnetization decreases while the coercivity first increases and then decreases with Bi is correlated to the competing effect between the local deformation and Cr–O–Cr exchange interaction. The magnetodielectric coupling with improved permittivity might be associated with the 6s2 lone pair electron of Bi3+. Furthermore, ac-conductivity increases with a decrease in activation energy (0.27–0.11 eV), is explained in the framework of structural model and charge carrier hopping between Cr3+ and Cr4+ ions."}],"title":"Tunable magnetoelectronic properties in Bi3+ substituted YCrO3","date_published":"2024-07-15T00:00:00Z","date_updated":"2025-01-29T08:37:14Z","publication_identifier":{"issn":["0921-4526"]},"doi":"10.1016/j.physb.2024.416018"},{"type":"journal_article","date_created":"2025-01-29T08:39:27Z","_id":"18938","ddc":["570"],"article_processing_charge":"No","intvolume":"       121","issue":"6","date_updated":"2025-05-14T11:02:52Z","publication_identifier":{"issn":["0027-8424"],"eissn":["1091-6490"]},"doi":"10.1073/pnas.2317453121","abstract":[{"text":"The synthesis of proteins as encoded in the genome depends critically on translational fidelity. Nevertheless, errors inevitably occur, and those that result in reading frame shifts are particularly consequential because the resulting polypeptides are typically nonfunctional. Despite the generally maladaptive impact of such errors, the proper decoding of certain mRNAs, including many viral mRNAs, depends on a process known as programmed ribosomal frameshifting. The fact that these programmed events, commonly involving a shift to the –1 frame, occur at specific evolutionarily optimized “slippery” sites has facilitated mechanistic investigation. By contrast, less is known about the scope and nature of error (i.e., nonprogrammed) frameshifting. Here, we examine error frameshifting by monitoring spontaneous frameshift events that suppress the effects of single base pair deletions affecting two unrelated test proteins. To map the precise sites of frameshifting, we developed a targeted mass spectrometry–based method called “translational tiling proteomics” for interrogating the full set of possible –1 slippage events that could produce the observed frameshift suppression. Surprisingly, such events occur at many sites along the transcripts, involving up to one half of the available codons. Only a subset of these resembled canonical “slippery” sites, implicating alternative mechanisms potentially involving noncognate mispairing events. Additionally, the aggregate frequency of these events (ranging from 1 to 10% in our test cases) was higher than we might have anticipated. Our findings point to an unexpected degree of mechanistic diversity among ribosomal frameshifting events and suggest that frameshifted products may contribute more significantly to the proteome than generally assumed.","lang":"eng"}],"license":"https://creativecommons.org/licenses/by-nc-nd/4.0/","title":"Systematic analysis of nonprogrammed frameshift suppression in E.coli via translational tiling proteomics","date_published":"2024-02-06T00:00:00Z","pmid":1,"acknowledgement":"We thank S. L. Dove for valuable discussion and comments on the manuscript and R. Hellmiss for artwork. This work was supported by NIH grants GM136247 to A.H., AG011085 to J.W.H., and GM132129 to J.A.P.","OA_place":"publisher","language":[{"iso":"eng"}],"oa":1,"publication_status":"published","publication":"Proceedings of the National Academy of Sciences of the United States of America","author":[{"last_name":"Springstein","first_name":"Benjamin L","orcid":"0000-0002-3461-5391","full_name":"Springstein, Benjamin L","id":"b4eb62ef-ac72-11ed-9503-ed3b4d66c083"},{"full_name":"Paulo, Joao A.","last_name":"Paulo","first_name":"Joao A."},{"last_name":"Park","first_name":"Hankum","full_name":"Park, Hankum"},{"full_name":"Henry, Kemardo","last_name":"Henry","first_name":"Kemardo"},{"full_name":"Fleming, Eleanor","last_name":"Fleming","first_name":"Eleanor"},{"full_name":"Feder, Zoë","last_name":"Feder","first_name":"Zoë"},{"last_name":"Harper","first_name":"J. Wade","full_name":"Harper, J. Wade"},{"full_name":"Hochschild, Ann","first_name":"Ann","last_name":"Hochschild"}],"quality_controlled":"1","oa_version":"Published Version","article_number":"e2317453121","file_date_updated":"2025-01-29T08:43:16Z","OA_type":"hybrid","year":"2024","has_accepted_license":"1","scopus_import":"1","status":"public","publisher":"National Academy of Sciences","file":[{"file_size":720902,"access_level":"open_access","file_id":"18939","checksum":"5bd62c7cb4287e3706a1d45d6ef61fd1","file_name":"2024_PNAS_Springstein.pdf","creator":"dernst","date_updated":"2025-01-29T08:43:16Z","date_created":"2025-01-29T08:43:16Z","content_type":"application/pdf","success":1,"relation":"main_file"}],"tmp":{"image":"/images/cc_by_nc_nd.png","legal_code_url":"https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode","name":"Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)","short":"CC BY-NC-ND (4.0)"},"article_type":"original","day":"06","volume":121,"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","external_id":{"pmid":["38289956"]},"month":"02","department":[{"_id":"MaLo"}],"citation":{"mla":"Springstein, Benjamin L., et al. “Systematic Analysis of Nonprogrammed Frameshift Suppression in E.Coli via Translational Tiling Proteomics.” <i>Proceedings of the National Academy of Sciences of the United States of America</i>, vol. 121, no. 6, e2317453121, National Academy of Sciences, 2024, doi:<a href=\"https://doi.org/10.1073/pnas.2317453121\">10.1073/pnas.2317453121</a>.","short":"B.L. Springstein, J.A. Paulo, H. Park, K. Henry, E. Fleming, Z. Feder, J.W. Harper, A. Hochschild, Proceedings of the National Academy of Sciences of the United States of America 121 (2024).","chicago":"Springstein, Benjamin L, Joao A. Paulo, Hankum Park, Kemardo Henry, Eleanor Fleming, Zoë Feder, J. Wade Harper, and Ann Hochschild. “Systematic Analysis of Nonprogrammed Frameshift Suppression in E.Coli via Translational Tiling Proteomics.” <i>Proceedings of the National Academy of Sciences of the United States of America</i>. National Academy of Sciences, 2024. <a href=\"https://doi.org/10.1073/pnas.2317453121\">https://doi.org/10.1073/pnas.2317453121</a>.","ama":"Springstein BL, Paulo JA, Park H, et al. Systematic analysis of nonprogrammed frameshift suppression in E.coli via translational tiling proteomics. <i>Proceedings of the National Academy of Sciences of the United States of America</i>. 2024;121(6). doi:<a href=\"https://doi.org/10.1073/pnas.2317453121\">10.1073/pnas.2317453121</a>","ieee":"B. L. Springstein <i>et al.</i>, “Systematic analysis of nonprogrammed frameshift suppression in E.coli via translational tiling proteomics,” <i>Proceedings of the National Academy of Sciences of the United States of America</i>, vol. 121, no. 6. National Academy of Sciences, 2024.","apa":"Springstein, B. L., Paulo, J. A., Park, H., Henry, K., Fleming, E., Feder, Z., … Hochschild, A. (2024). Systematic analysis of nonprogrammed frameshift suppression in E.coli via translational tiling proteomics. <i>Proceedings of the National Academy of Sciences of the United States of America</i>. National Academy of Sciences. <a href=\"https://doi.org/10.1073/pnas.2317453121\">https://doi.org/10.1073/pnas.2317453121</a>","ista":"Springstein BL, Paulo JA, Park H, Henry K, Fleming E, Feder Z, Harper JW, Hochschild A. 2024. Systematic analysis of nonprogrammed frameshift suppression in E.coli via translational tiling proteomics. Proceedings of the National Academy of Sciences of the United States of America. 121(6), e2317453121."}},{"date_updated":"2025-01-29T08:56:21Z","publication_identifier":{"issn":["2050-084X"]},"doi":"10.7554/elife.80803","abstract":[{"text":"BMP signaling has a conserved function in patterning the dorsal-ventral body axis in Bilateria and the directive axis in anthozoan cnidarians. So far, cnidarian studies have focused on the role of different BMP signaling network components in regulating pSMAD1/5 gradient formation. Much less is known about the target genes downstream of BMP signaling. To address this, we generated a genome-wide list of direct pSMAD1/5 target genes in the anthozoan <jats:italic>Nematostella vectensis</jats:italic>, several of which were conserved in <jats:italic>Drosophila</jats:italic> and <jats:italic>Xenopus</jats:italic>. Our ChIP-seq analysis revealed that many of the regulatory molecules with documented bilaterally symmetric expression in <jats:italic>Nematostella</jats:italic> are directly controlled by BMP signaling. We identified several so far uncharacterized BMP-dependent transcription factors and signaling molecules, whose bilaterally symmetric expression may be indicative of their involvement in secondary axis patterning. One of these molecules is <jats:italic>zswim4-6</jats:italic>, which encodes a novel nuclear protein that can modulate the pSMAD1/5 gradient and potentially promote BMP-dependent gene repression.","lang":"eng"}],"title":"Analysis of SMAD1/5 target genes in a sea anemone reveals ZSWIM4-6 as a novel BMP signaling modulator","date_published":"2024-02-07T00:00:00Z","acknowledgement":"This work was funded by the Austrian Science Foundation (FWF) grants P26962-B21 and P32705-B to GG and by the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program (grant agreement No 637840 [QUANTPATTERN] and 863952 [ACE-OF-SPACE]) to PM. We thank Michaela Schwaiger, Taras Kreslavsky, Hiromi Tagoh, and Patricio Ferrer Murguia for their help with the ChIP protocol, Matthias Richter and Christian Hofer for their assistance with in situ analyses, Emilio Gonzalez Morales for making the measurements for Figure 6—figure supplement 3, Catrin Weiler for the assistance in cloning zebrafish zswim5, David Mörsdorf for critically reading the manuscript and help with data visualization, and the Core Facility for Cell Imaging and Ultrastructure Research of the University of Vienna for access to the confocal microscope.","OA_place":"publisher","language":[{"iso":"eng"}],"oa":1,"publication":"eLife","publication_status":"published","DOAJ_listed":"1","type":"journal_article","date_created":"2025-01-29T08:48:34Z","_id":"18940","ddc":["570"],"article_processing_charge":"Yes","intvolume":"        13","has_accepted_license":"1","scopus_import":"1","file":[{"relation":"main_file","success":1,"creator":"dernst","file_name":"2024_eLife_Knabl.pdf","file_id":"18941","checksum":"24548a184215d3f4547bba535ccfd7b1","access_level":"open_access","file_size":11855972,"content_type":"application/pdf","date_created":"2025-01-29T08:50:18Z","date_updated":"2025-01-29T08:50:18Z"}],"status":"public","publisher":"eLife Sciences Publications","tmp":{"short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode","image":"/images/cc_by.png"},"day":"07","article_type":"original","user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","volume":13,"month":"02","department":[{"_id":"CaHe"}],"citation":{"ista":"Knabl P, Schauer A, Pomreinke AP, Zimmermann B, Rogers KW, Čapek D, Müller P, Genikhovich G. 2024. Analysis of SMAD1/5 target genes in a sea anemone reveals ZSWIM4-6 as a novel BMP signaling modulator. eLife. 13.","apa":"Knabl, P., Schauer, A., Pomreinke, A. P., Zimmermann, B., Rogers, K. W., Čapek, D., … Genikhovich, G. (2024). Analysis of SMAD1/5 target genes in a sea anemone reveals ZSWIM4-6 as a novel BMP signaling modulator. <i>ELife</i>. eLife Sciences Publications. <a href=\"https://doi.org/10.7554/elife.80803\">https://doi.org/10.7554/elife.80803</a>","ieee":"P. Knabl <i>et al.</i>, “Analysis of SMAD1/5 target genes in a sea anemone reveals ZSWIM4-6 as a novel BMP signaling modulator,” <i>eLife</i>, vol. 13. eLife Sciences Publications, 2024.","chicago":"Knabl, Paul, Alexandra Schauer, Autumn P Pomreinke, Bob Zimmermann, Katherine W Rogers, Daniel Čapek, Patrick Müller, and Grigory Genikhovich. “Analysis of SMAD1/5 Target Genes in a Sea Anemone Reveals ZSWIM4-6 as a Novel BMP Signaling Modulator.” <i>ELife</i>. eLife Sciences Publications, 2024. <a href=\"https://doi.org/10.7554/elife.80803\">https://doi.org/10.7554/elife.80803</a>.","ama":"Knabl P, Schauer A, Pomreinke AP, et al. Analysis of SMAD1/5 target genes in a sea anemone reveals ZSWIM4-6 as a novel BMP signaling modulator. <i>eLife</i>. 2024;13. doi:<a href=\"https://doi.org/10.7554/elife.80803\">10.7554/elife.80803</a>","short":"P. Knabl, A. Schauer, A.P. Pomreinke, B. Zimmermann, K.W. Rogers, D. Čapek, P. Müller, G. Genikhovich, ELife 13 (2024).","mla":"Knabl, Paul, et al. “Analysis of SMAD1/5 Target Genes in a Sea Anemone Reveals ZSWIM4-6 as a Novel BMP Signaling Modulator.” <i>ELife</i>, vol. 13, eLife Sciences Publications, 2024, doi:<a href=\"https://doi.org/10.7554/elife.80803\">10.7554/elife.80803</a>."},"author":[{"last_name":"Knabl","first_name":"Paul","full_name":"Knabl, Paul"},{"full_name":"Schauer, Alexandra","id":"30A536BA-F248-11E8-B48F-1D18A9856A87","last_name":"Schauer","orcid":"0000-0001-7659-9142","first_name":"Alexandra"},{"full_name":"Pomreinke, Autumn P","first_name":"Autumn P","last_name":"Pomreinke"},{"first_name":"Bob","last_name":"Zimmermann","full_name":"Zimmermann, Bob"},{"last_name":"Rogers","first_name":"Katherine W","full_name":"Rogers, Katherine W"},{"last_name":"Čapek","first_name":"Daniel","full_name":"Čapek, Daniel"},{"full_name":"Müller, Patrick","last_name":"Müller","first_name":"Patrick"},{"last_name":"Genikhovich","first_name":"Grigory","full_name":"Genikhovich, Grigory"}],"quality_controlled":"1","oa_version":"Published Version","file_date_updated":"2025-01-29T08:50:18Z","OA_type":"gold","year":"2024"},{"publication_identifier":{"eissn":["1616-1599"],"issn":["0171-8630"]},"doi":"10.3354/meps14640","date_updated":"2025-01-29T09:12:34Z","title":"Seascape genetic study on Laminaria digitata underscores the critical role of sampling schemes","date_published":"2024-07-25T00:00:00Z","abstract":[{"lang":"eng","text":"Understanding connectivity patterns exhibited by endangered species living in fragmented habitats is fundamental to improving management and conservation actions. Such improvements can be particularly pressing at the trailing edges of these habitats, where populations are facing the greatest challenges from climate change, and appear even more crucial if the species is commercially harvested. Seascape genetics have been increasingly used to meet these needs. In this study, we examined connectivity patterns among 32 populations of the oarweed kelp <jats:italic>Lam</jats:italic><jats:italic>inaria digitata</jats:italic> located at the species’ southern range limit. The distance (or sampling gap) between neighboring populations ranged from a few km to a few 100s of km. By genotyping 11 microsatellite markers, we aimed to (1) refine analyses of population structure; (2) test whether on-shelf islands are genetically more differentiated than mainland populations; (3) evaluate the relative importance of various abiotic conditions in shaping the genetic structure; and (4) evaluate if the relative importance of each environmental factor varied according to sampling schemes. Our analyses revealed a positive relationship between connectivity links and genetic diversity: populations with high levels of connectivity were genetically enriched while isolated populations showed signs of genetic erosion. The genetically impoverished populations corresponded to the southernmost populations as well as populations along the northern coast of Brittany (Locquirec, Saint-Malo Bay) and the northernmost population in Pas-de-Calais. By performing distance-based redundancy analysis on various sampling schemes, geographic distance appeared as the dominant factor influencing connectivity between populations separated by great distances, while hydrodynamic processes were the main factor when analyzing at a final spatial resolution."}],"main_file_link":[{"open_access":"1","url":"https://inria.hal.science/hal-04624490/"}],"oa":1,"publication":"Marine Ecology Progress Series","publication_status":"published","OA_place":"repository","language":[{"iso":"eng"}],"page":"23-42","date_created":"2025-01-29T09:09:10Z","type":"journal_article","article_processing_charge":"No","_id":"18944","corr_author":"1","intvolume":"       740","scopus_import":"1","status":"public","publisher":"Inter-Research Science Center","article_type":"original","day":"25","month":"07","department":[{"_id":"NiBa"}],"volume":740,"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","citation":{"short":"L. Fouqueau, L. Reynes, F. Tempera, T. Bajjouk, A. Blanfuné, C. Chevalier, M. Laurans, S. Mauger, M. Sourisseau, J. Assis, L. Lévêque, M. Valero, Marine Ecology Progress Series 740 (2024) 23–42.","mla":"Fouqueau, Louise, et al. “Seascape Genetic Study on Laminaria Digitata Underscores the Critical Role of Sampling Schemes.” <i>Marine Ecology Progress Series</i>, vol. 740, Inter-Research Science Center, 2024, pp. 23–42, doi:<a href=\"https://doi.org/10.3354/meps14640\">10.3354/meps14640</a>.","ista":"Fouqueau L, Reynes L, Tempera F, Bajjouk T, Blanfuné A, Chevalier C, Laurans M, Mauger S, Sourisseau M, Assis J, Lévêque L, Valero M. 2024. Seascape genetic study on Laminaria digitata underscores the critical role of sampling schemes. Marine Ecology Progress Series. 740, 23–42.","apa":"Fouqueau, L., Reynes, L., Tempera, F., Bajjouk, T., Blanfuné, A., Chevalier, C., … Valero, M. (2024). Seascape genetic study on Laminaria digitata underscores the critical role of sampling schemes. <i>Marine Ecology Progress Series</i>. Inter-Research Science Center. <a href=\"https://doi.org/10.3354/meps14640\">https://doi.org/10.3354/meps14640</a>","ieee":"L. Fouqueau <i>et al.</i>, “Seascape genetic study on Laminaria digitata underscores the critical role of sampling schemes,” <i>Marine Ecology Progress Series</i>, vol. 740. Inter-Research Science Center, pp. 23–42, 2024.","chicago":"Fouqueau, Louise, L Reynes, F Tempera, T Bajjouk, A Blanfuné, C Chevalier, M Laurans, et al. “Seascape Genetic Study on Laminaria Digitata Underscores the Critical Role of Sampling Schemes.” <i>Marine Ecology Progress Series</i>. Inter-Research Science Center, 2024. <a href=\"https://doi.org/10.3354/meps14640\">https://doi.org/10.3354/meps14640</a>.","ama":"Fouqueau L, Reynes L, Tempera F, et al. Seascape genetic study on Laminaria digitata underscores the critical role of sampling schemes. <i>Marine Ecology Progress Series</i>. 2024;740:23-42. doi:<a href=\"https://doi.org/10.3354/meps14640\">10.3354/meps14640</a>"},"author":[{"last_name":"Fouqueau","orcid":"0000-0003-0371-9339","first_name":"Louise","full_name":"Fouqueau, Louise","id":"1676e173-8143-11ed-8927-fe165216a93f"},{"first_name":"L","last_name":"Reynes","full_name":"Reynes, L"},{"full_name":"Tempera, F","last_name":"Tempera","first_name":"F"},{"full_name":"Bajjouk, T","last_name":"Bajjouk","first_name":"T"},{"last_name":"Blanfuné","first_name":"A","full_name":"Blanfuné, A"},{"first_name":"C","last_name":"Chevalier","full_name":"Chevalier, C"},{"full_name":"Laurans, M","last_name":"Laurans","first_name":"M"},{"full_name":"Mauger, S","first_name":"S","last_name":"Mauger"},{"full_name":"Sourisseau, M","last_name":"Sourisseau","first_name":"M"},{"full_name":"Assis, J","first_name":"J","last_name":"Assis"},{"last_name":"Lévêque","first_name":"L","full_name":"Lévêque, L"},{"last_name":"Valero","first_name":"M","full_name":"Valero, M"}],"quality_controlled":"1","OA_type":"green","year":"2024","oa_version":"Submitted Version"},{"pmid":1,"acknowledgement":"R.M.C. and K.B.M. are grateful for support by FAPESP (Fundação de Amparo à Pesquisa do Estado de São Paulo) (grants 2013/50724–5 and 2014/50897–0), Embrapii (Empresa Brasileira de Pesquisa e Inovação Industrial), CNPq (Conselho Nacional de Desenvolvimento Científico e Tecnológico) (grant 465651/2014–3) and Aché Laboratórios Farmacêuticos. R.M.C. and O.G. are also grateful for support by the Structural Genomics Consortium, a registered charity (1097737) that receives funds from AbbVie, Bayer AG, Boehringer Ingelheim, Canada Foundation for Innovation, Eshelman Institute for Innovation, Genentech, Genome Canada through the Ontario Genomics Institute (OGI-196), EU/EFPIA/OICR/McGill/KTH/Diamond, Innovative Medicines Initiative 2 Joint Undertaking (EUbOPEN Grant 875510), Janssen, Merck KGaA, Merck & Co., Pfizer, Takeda, and Wellcome. B.L. and M.H. are grateful for support from the Swedish Research Council, Swedish Cancer Society, Karolinska Institutet and The Mark Foundation for Cancer Research. R.A.M.S. (2016/25320–6 and 2018/23322–7), A.S.S. (2019/14275–8), S.N.S.V (2018/09475–5), V.M.A. (2022/00743–2) and M.R.C. (2021/04853–4) were recipients of fellowships from the Fundação de Amparo à Pesquisa do Estado de São Paulo, FAPESP. C.V.R. (88887.146077/2017–00), J.E.T. (88887.373547/2019–00) and P.Z.R (88887.136432/2017–00) were the recipient of fellowships from the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, CAPES.\r\nWe thank all members of CQMED-UNICAMP for their help and support. We thank the staff of the Life Sciences Core Facility (LaCTAD) at UNICAMP for the Genomics and Mass Spectrometry analysis. We thank the NMR facility at UNICAMP Chemistry Institute for its assistance. We thank the staff at the Northeastern Collaborative Access Team beamlines, which are funded by the National Institute of General Medical Sciences from the National Institutes of Health (P41 GM103403). The Pilatus 6M detector on the 24-ID-C beamline is funded by a NIH-ORIP HEI grant (S10 RR029205). This research used resources of the Advanced Photon Source; a U.S. Department of Energy (DOE) Office of Science User Facility operated for the DOE Office of Science by Argonne National Laboratory under Contract No. DE-AC02-06CH11357. We thank Diamond Light Source for access to beamline I24. The authors thank Tammy Havener (SGC-UNC), Abid Hussain Sayyid (KI), and Yiqiu Yang (KI) for valuable discussions and technical support.","language":[{"iso":"eng"}],"publication_status":"published","publication":"Journal of Medicinal Chemistry","date_updated":"2025-01-29T09:19:15Z","publication_identifier":{"eissn":["1520-4804"],"issn":["0022-2623"]},"doi":"10.1021/acs.jmedchem.3c02250","abstract":[{"text":"Vaccinia-related kinase 1 (VRK1) and the δ and ε isoforms of casein kinase 1 (CK1) are linked to various disease-relevant pathways. However, the lack of tool compounds for these kinases has significantly hampered our understanding of their cellular functions and therapeutic potential. Here, we describe the structure-based development of potent inhibitors of VRK1, a kinase highly expressed in various tumor types and crucial for cell proliferation and genome integrity. Kinome-wide profiling revealed that our compounds also inhibit CK1δ and CK1ε. We demonstrate that dihydropteridinones 35 and 36 mimic the cellular outcomes of VRK1 depletion. Complementary studies with existing CK1δ and CK1ε inhibitors suggest that these kinases may play overlapping roles in cell proliferation and genome instability. Together, our findings highlight the potential of VRK1 inhibition in treating p53-deficient tumors and possibly enhancing the efficacy of existing cancer therapies that target DNA stability or cell division.","lang":"eng"}],"title":"Novel dihydropteridinone derivatives as potent inhibitors of the understudied human kinases vaccinia-related kinase 1 and casein kinase 1δ/ε","date_published":"2024-05-23T00:00:00Z","intvolume":"        67","issue":"11","type":"journal_article","page":"8609-8629","date_created":"2025-01-29T09:14:19Z","_id":"18945","article_processing_charge":"No","volume":67,"external_id":{"pmid":["38780468"]},"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","month":"05","department":[{"_id":"CaBe"}],"citation":{"mla":"de Souza Gama, Fernando H., et al. “Novel Dihydropteridinone Derivatives as Potent Inhibitors of the Understudied Human Kinases Vaccinia-Related Kinase 1 and Casein Kinase 1δ/ε.” <i>Journal of Medicinal Chemistry</i>, vol. 67, no. 11, American Chemical Society, 2024, pp. 8609–29, doi:<a href=\"https://doi.org/10.1021/acs.jmedchem.3c02250\">10.1021/acs.jmedchem.3c02250</a>.","short":"F.H. de Souza Gama, L.A. Dutra, M. Hawgood, C.V. dos Reis, R.A.M. Serafim, M.A. Ferreira, B.V.M. Teodoro, J.E. Takarada, A.S. Santiago, D.-I. Balourdas, A.-S. Nilsson, B. Urien, V.M. Almeida, C. Gileadi, P.Z. Ramos, A.P. Testa Salmazo, S.N.S. Vasconcelos, M.R. Cunha, S. Mueller, S. Knapp, K.B. Massirer, J.M. Elkins, O. Gileadi, A. Mascarello, B.B.L.G. Lemmens, C.R.W. Guimarães, H. Azevedo, R.M. Couñago, Journal of Medicinal Chemistry 67 (2024) 8609–8629.","apa":"de Souza Gama, F. H., Dutra, L. A., Hawgood, M., dos Reis, C. V., Serafim, R. A. M., Ferreira, M. A., … Couñago, R. M. (2024). Novel dihydropteridinone derivatives as potent inhibitors of the understudied human kinases vaccinia-related kinase 1 and casein kinase 1δ/ε. <i>Journal of Medicinal Chemistry</i>. American Chemical Society. <a href=\"https://doi.org/10.1021/acs.jmedchem.3c02250\">https://doi.org/10.1021/acs.jmedchem.3c02250</a>","ama":"de Souza Gama FH, Dutra LA, Hawgood M, et al. Novel dihydropteridinone derivatives as potent inhibitors of the understudied human kinases vaccinia-related kinase 1 and casein kinase 1δ/ε. <i>Journal of Medicinal Chemistry</i>. 2024;67(11):8609-8629. doi:<a href=\"https://doi.org/10.1021/acs.jmedchem.3c02250\">10.1021/acs.jmedchem.3c02250</a>","chicago":"Souza Gama, Fernando H. de, Luiz A. Dutra, Michael Hawgood, Caio Vinícius dos Reis, Ricardo A. M. Serafim, Marcos A. Ferreira, Bruno V. M. Teodoro, et al. “Novel Dihydropteridinone Derivatives as Potent Inhibitors of the Understudied Human Kinases Vaccinia-Related Kinase 1 and Casein Kinase 1δ/ε.” <i>Journal of Medicinal Chemistry</i>. American Chemical Society, 2024. <a href=\"https://doi.org/10.1021/acs.jmedchem.3c02250\">https://doi.org/10.1021/acs.jmedchem.3c02250</a>.","ieee":"F. H. de Souza Gama <i>et al.</i>, “Novel dihydropteridinone derivatives as potent inhibitors of the understudied human kinases vaccinia-related kinase 1 and casein kinase 1δ/ε,” <i>Journal of Medicinal Chemistry</i>, vol. 67, no. 11. American Chemical Society, pp. 8609–8629, 2024.","ista":"de Souza Gama FH, Dutra LA, Hawgood M, dos Reis CV, Serafim RAM, Ferreira MA, Teodoro BVM, Takarada JE, Santiago AS, Balourdas D-I, Nilsson A-S, Urien B, Almeida VM, Gileadi C, Ramos PZ, Testa Salmazo AP, Vasconcelos SNS, Cunha MR, Mueller S, Knapp S, Massirer KB, Elkins JM, Gileadi O, Mascarello A, Lemmens BBLG, Guimarães CRW, Azevedo H, Couñago RM. 2024. Novel dihydropteridinone derivatives as potent inhibitors of the understudied human kinases vaccinia-related kinase 1 and casein kinase 1δ/ε. Journal of Medicinal Chemistry. 67(11), 8609–8629."},"scopus_import":"1","publisher":"American Chemical Society","status":"public","article_type":"original","day":"23","quality_controlled":"1","oa_version":"None","OA_type":"closed access","year":"2024","author":[{"full_name":"de Souza Gama, Fernando H.","first_name":"Fernando H.","last_name":"de Souza Gama"},{"last_name":"Dutra","first_name":"Luiz A.","full_name":"Dutra, Luiz A."},{"last_name":"Hawgood","first_name":"Michael","full_name":"Hawgood, Michael"},{"full_name":"dos Reis, Caio Vinícius","last_name":"dos Reis","first_name":"Caio Vinícius"},{"first_name":"Ricardo A. M.","last_name":"Serafim","full_name":"Serafim, Ricardo A. M."},{"first_name":"Marcos A.","last_name":"Ferreira","full_name":"Ferreira, Marcos A."},{"full_name":"Teodoro, Bruno V. M.","first_name":"Bruno V. M.","last_name":"Teodoro"},{"full_name":"Takarada, Jéssica Emi","last_name":"Takarada","first_name":"Jéssica Emi"},{"full_name":"Santiago, André S.","last_name":"Santiago","first_name":"André S."},{"full_name":"Balourdas, Dimitrios-Ilias","last_name":"Balourdas","first_name":"Dimitrios-Ilias"},{"full_name":"Nilsson, Ann-Sofie","last_name":"Nilsson","first_name":"Ann-Sofie"},{"last_name":"Urien","first_name":"Bruno","full_name":"Urien, Bruno"},{"full_name":"Almeida, Vitor M.","last_name":"Almeida","first_name":"Vitor M."},{"first_name":"Carina","last_name":"Gileadi","full_name":"Gileadi, Carina"},{"last_name":"Ramos","first_name":"Priscila Z.","full_name":"Ramos, Priscila Z."},{"id":"41F1F098-F248-11E8-B48F-1D18A9856A87","full_name":"Testa Salmazo, Anita P","first_name":"Anita P","last_name":"Testa Salmazo"},{"full_name":"Vasconcelos, Stanley N. S.","first_name":"Stanley N. S.","last_name":"Vasconcelos"},{"full_name":"Cunha, Micael R.","first_name":"Micael R.","last_name":"Cunha"},{"full_name":"Mueller, Susanne","last_name":"Mueller","first_name":"Susanne"},{"last_name":"Knapp","first_name":"Stefan","full_name":"Knapp, Stefan"},{"first_name":"Katlin B.","last_name":"Massirer","full_name":"Massirer, Katlin B."},{"first_name":"Jonathan M.","last_name":"Elkins","full_name":"Elkins, Jonathan M."},{"last_name":"Gileadi","first_name":"Opher","full_name":"Gileadi, Opher"},{"first_name":"Alessandra","last_name":"Mascarello","full_name":"Mascarello, Alessandra"},{"full_name":"Lemmens, Bennie B. L. G.","last_name":"Lemmens","first_name":"Bennie B. L. G."},{"first_name":"Cristiano R. W.","last_name":"Guimarães","full_name":"Guimarães, Cristiano R. W."},{"full_name":"Azevedo, Hatylas","first_name":"Hatylas","last_name":"Azevedo"},{"last_name":"Couñago","first_name":"Rafael M.","full_name":"Couñago, Rafael M."}]},{"intvolume":"       215","type":"book_chapter","page":"307-321","date_created":"2025-01-29T10:30:08Z","_id":"18948","article_processing_charge":"No","arxiv":1,"main_file_link":[{"open_access":"1","url":"https://doi.org/10.48550/arXiv.2304.12910"}],"acknowledgement":"It is our pleasure to thank Marco Falconi, Nataša Pavlović, Peter Pickl, Robert Seiringer and Avy Soffer for the collaboration on the works [11, 13, 14, 21, 33, 39]. L.B. was supported by the German Research Foundation within the Munich Center of Quantum Science and Technology (EXC 2111). N.L. acknowledges support from the Swiss National Science Foundation through the NCCR SwissMap and funding from the European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant agreement No 101024712. S.P. acknowledges funding by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - project number 512258249.","OA_place":"repository","language":[{"iso":"eng"}],"oa":1,"series_title":"FTPH","alternative_title":["Fundamental Theories of Physics"],"publication":"Physics and the Nature of Reality","publication_status":"published","editor":[{"full_name":"Bassi, Angelo","last_name":"Bassi","first_name":"Angelo"},{"last_name":"Goldstein","first_name":"Sheldon","full_name":"Goldstein, Sheldon"},{"full_name":"Tumulka, Roderich","first_name":"Roderich","last_name":"Tumulka"},{"last_name":"Zanghi","first_name":"Nino","full_name":"Zanghi, Nino"}],"date_updated":"2025-01-29T10:35:10Z","publication_identifier":{"issn":["0168-1222"],"isbn":["9783031454332"],"eisbn":["9783031454349"],"eissn":["2365-6425"]},"doi":"10.1007/978-3-031-45434-9_22","abstract":[{"lang":"eng","text":"We consider a gas of N bosons with interactions in the mean-field scaling regime. We review a recent proof of the asymptotic expansion of its spectrum and eigenstates and two applications of this result, namely the derivation of an Edgeworth expansion for fluctuations of one-body operators and the computation of the binding energy of an inhomogeneous Bose gas to any order. Finally, we collect related results for the dynamics of the weakly interacting Bose gas and for the regularized Nelson model."}],"title":"Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications","date_published":"2024-02-04T00:00:00Z","quality_controlled":"1","oa_version":"Preprint","OA_type":"green","year":"2024","author":[{"id":"A2E3BCBE-5FCC-11E9-AA4B-76F3E5697425","full_name":"Bossmann, Lea","orcid":"0000-0002-6854-1343","first_name":"Lea","last_name":"Bossmann"},{"first_name":"Nikolai","last_name":"Leopold","full_name":"Leopold, Nikolai"},{"id":"cbddacee-2b11-11eb-a02e-a2e14d04e52d","full_name":"Mitrouskas, David Johannes","first_name":"David Johannes","last_name":"Mitrouskas"},{"full_name":"Petrat, Sören","last_name":"Petrat","first_name":"Sören"}],"external_id":{"arxiv":["2304.12910"]},"volume":215,"user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","month":"02","department":[{"_id":"RoSe"}],"citation":{"mla":"Bossmann, Lea, et al. “Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications.” <i>Physics and the Nature of Reality</i>, edited by Angelo Bassi et al., vol. 215, Springer Nature, 2024, pp. 307–21, doi:<a href=\"https://doi.org/10.1007/978-3-031-45434-9_22\">10.1007/978-3-031-45434-9_22</a>.","short":"L. Bossmann, N. Leopold, D.J. Mitrouskas, S. Petrat, in:, A. Bassi, S. Goldstein, R. Tumulka, N. Zanghi (Eds.), Physics and the Nature of Reality, Springer Nature, Cham, 2024, pp. 307–321.","ama":"Bossmann L, Leopold N, Mitrouskas DJ, Petrat S. Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications. In: Bassi A, Goldstein S, Tumulka R, Zanghi N, eds. <i>Physics and the Nature of Reality</i>. Vol 215. FTPH. Cham: Springer Nature; 2024:307-321. doi:<a href=\"https://doi.org/10.1007/978-3-031-45434-9_22\">10.1007/978-3-031-45434-9_22</a>","chicago":"Bossmann, Lea, Nikolai Leopold, David Johannes Mitrouskas, and Sören Petrat. “Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications.” In <i>Physics and the Nature of Reality</i>, edited by Angelo Bassi, Sheldon Goldstein, Roderich Tumulka, and Nino Zanghi, 215:307–21. FTPH. Cham: Springer Nature, 2024. <a href=\"https://doi.org/10.1007/978-3-031-45434-9_22\">https://doi.org/10.1007/978-3-031-45434-9_22</a>.","ieee":"L. Bossmann, N. Leopold, D. J. Mitrouskas, and S. Petrat, “Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications,” in <i>Physics and the Nature of Reality</i>, vol. 215, A. Bassi, S. Goldstein, R. Tumulka, and N. Zanghi, Eds. Cham: Springer Nature, 2024, pp. 307–321.","apa":"Bossmann, L., Leopold, N., Mitrouskas, D. J., &#38; Petrat, S. (2024). Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications. In A. Bassi, S. Goldstein, R. Tumulka, &#38; N. Zanghi (Eds.), <i>Physics and the Nature of Reality</i> (Vol. 215, pp. 307–321). Cham: Springer Nature. <a href=\"https://doi.org/10.1007/978-3-031-45434-9_22\">https://doi.org/10.1007/978-3-031-45434-9_22</a>","ista":"Bossmann L, Leopold N, Mitrouskas DJ, Petrat S. 2024.Asymptotic Analysis of the Weakly Interacting Bose Gas: A Collection of Recent Results and Applications. In: Physics and the Nature of Reality. Fundamental Theories of Physics, vol. 215, 307–321."},"place":"Cham","status":"public","publisher":"Springer Nature","scopus_import":"1","day":"04"},{"corr_author":"1","intvolume":"         3","issue":"1","date_created":"2025-01-29T10:38:17Z","type":"journal_article","article_processing_charge":"Yes","_id":"18949","ddc":["570"],"acknowledgement":"We thank the staff of the Tvärminne Zoological Station (University of Helsinki) for their hospitality during the workshop. We are also grateful to everyone who applied to attend the workshop.\r\nFunding for the workshop was provided by the European Society for Evolutionary Biology through the Special Topic Network (STN) funding scheme.","publication_status":"published","publication":"Evolutionary Journal of the Linnean Society","oa":1,"language":[{"iso":"eng"}],"OA_place":"publisher","doi":"10.1093/evolinnean/kzae001","publication_identifier":{"issn":["2752-938X"]},"date_updated":"2025-01-29T10:55:54Z","date_published":"2024-02-16T00:00:00Z","title":"Toward the integration of speciation research","abstract":[{"lang":"eng","text":"Speciation research—the scientific field focused on understanding the origin and diversity of species—has a long and complex history. While relevant to one another, the specific goals and activities of speciation researchers are highly diverse, and scattered across a collection of different perspectives. Thus, our understanding of speciation will benefit from efforts to bridge scientific findings and the diverse people who do the work. In this paper, we outline two ways of integrating speciation research: (i) scientific integration, through the bringing together of ideas, data, and approaches; and (ii) social integration, by creating ways for a diversity of researchers to participate in the scientific process. We then discuss five challenges to integration: (i) the multidisciplinary nature of speciation research, (ii) the complex language of speciation; (iii) a bias toward certain study systems; (iv) the challenges of working across scales; and (v) inconsistent measures and reporting standards. We provide practical steps that individuals and groups can take to help overcome these challenges, and argue that integration is a team effort in which we all have a role to play."}],"quality_controlled":"1","year":"2024","OA_type":"gold","file_date_updated":"2025-01-29T10:52:40Z","article_number":"kzae001","oa_version":"Published Version","author":[{"last_name":"Stankowski","first_name":"Sean","full_name":"Stankowski, Sean","id":"43161670-5719-11EA-8025-FABC3DDC885E"},{"last_name":"Cutter","first_name":"Asher D","full_name":"Cutter, Asher D"},{"last_name":"Satokangas","first_name":"Ina","full_name":"Satokangas, Ina"},{"first_name":"Brian A","last_name":"Lerch","full_name":"Lerch, Brian A"},{"full_name":"Rolland, Jonathan","first_name":"Jonathan","last_name":"Rolland"},{"first_name":"Carole M","last_name":"Smadja","full_name":"Smadja, Carole M"},{"first_name":"J Carolina","last_name":"Segami Marzal","full_name":"Segami Marzal, J Carolina"},{"first_name":"Christopher R","last_name":"Cooney","full_name":"Cooney, Christopher R"},{"full_name":"Feulner, Philine G D","last_name":"Feulner","first_name":"Philine G D"},{"first_name":"Fabricius Maia Chaves Bicalho","last_name":"Domingos","full_name":"Domingos, Fabricius Maia Chaves Bicalho"},{"first_name":"Henry L","last_name":"North","full_name":"North, Henry L"},{"full_name":"Yamaguchi, Ryo","first_name":"Ryo","last_name":"Yamaguchi"},{"full_name":"Butlin, Roger K","first_name":"Roger K","last_name":"Butlin"},{"last_name":"Wolf","first_name":"Jochen B W","full_name":"Wolf, Jochen B W"},{"full_name":"Coughlan, Jenn","first_name":"Jenn","last_name":"Coughlan"},{"full_name":"Heidbreder, Patrick","first_name":"Patrick","last_name":"Heidbreder"},{"last_name":"Hernández-Gutiérrez","first_name":"Rebeca","full_name":"Hernández-Gutiérrez, Rebeca"},{"full_name":"Barnard-Kubow, Karen B","last_name":"Barnard-Kubow","first_name":"Karen B"},{"last_name":"Peede","first_name":"David","full_name":"Peede, David"},{"last_name":"Rancilhac","first_name":"Loïs","full_name":"Rancilhac, Loïs"},{"full_name":"Salvador, Rodrigo Brincalepe","last_name":"Salvador","first_name":"Rodrigo Brincalepe"},{"last_name":"Thompson","first_name":"Ken A","full_name":"Thompson, Ken A"},{"last_name":"Stacy","first_name":"Elizabeth A","full_name":"Stacy, Elizabeth A"},{"first_name":"Leonie C","last_name":"Moyle","full_name":"Moyle, Leonie C"},{"last_name":"Garlovsky","first_name":"Martin D","full_name":"Garlovsky, Martin D"},{"last_name":"Maulana","first_name":"Arif","full_name":"Maulana, Arif"},{"last_name":"Kantelinen","first_name":"Annina","full_name":"Kantelinen, Annina"},{"full_name":"Cacho, N Ivalú","last_name":"Cacho","first_name":"N Ivalú"},{"first_name":"Hilde","last_name":"Schneemann","full_name":"Schneemann, Hilde"},{"full_name":"Domínguez, Marisol","last_name":"Domínguez","first_name":"Marisol"},{"last_name":"Dopman","first_name":"Erik B","full_name":"Dopman, Erik B"},{"full_name":"Lohse, Konrad","first_name":"Konrad","last_name":"Lohse"},{"full_name":"Rometsch, Sina J","first_name":"Sina J","last_name":"Rometsch"},{"full_name":"Comeault, Aaron A","first_name":"Aaron A","last_name":"Comeault"},{"last_name":"Merrill","first_name":"Richard M","full_name":"Merrill, Richard M"},{"last_name":"Scordato","first_name":"Elizabeth S C","full_name":"Scordato, Elizabeth S C"},{"full_name":"Singhal, Sonal","last_name":"Singhal","first_name":"Sonal"},{"last_name":"Pärssinen","first_name":"Varpu","full_name":"Pärssinen, Varpu"},{"full_name":"Lackey, Alycia C R","first_name":"Alycia C R","last_name":"Lackey"},{"first_name":"Sanghamitra","last_name":"Kumar","full_name":"Kumar, Sanghamitra"},{"first_name":"Joana I","last_name":"Meier","full_name":"Meier, Joana I"},{"orcid":"0000-0002-8548-5240","first_name":"Nicholas H","last_name":"Barton","id":"4880FE40-F248-11E8-B48F-1D18A9856A87","full_name":"Barton, Nicholas H"},{"id":"32DF5794-F248-11E8-B48F-1D18A9856A87","full_name":"Fraisse, Christelle","first_name":"Christelle","orcid":"0000-0001-8441-5075","last_name":"Fraisse"},{"full_name":"Ravinet, Mark","first_name":"Mark","last_name":"Ravinet"},{"full_name":"Kulmuni, Jonna","last_name":"Kulmuni","first_name":"Jonna"}],"department":[{"_id":"NiBa"}],"month":"02","user_id":"2DF688A6-F248-11E8-B48F-1D18A9856A87","volume":3,"citation":{"short":"S. Stankowski, A.D. Cutter, I. Satokangas, B.A. Lerch, J. Rolland, C.M. Smadja, J.C. Segami Marzal, C.R. Cooney, P.G.D. Feulner, F.M.C.B. Domingos, H.L. North, R. Yamaguchi, R.K. Butlin, J.B.W. Wolf, J. Coughlan, P. Heidbreder, R. Hernández-Gutiérrez, K.B. Barnard-Kubow, D. Peede, L. Rancilhac, R.B. Salvador, K.A. Thompson, E.A. Stacy, L.C. Moyle, M.D. Garlovsky, A. Maulana, A. Kantelinen, N.I. Cacho, H. Schneemann, M. Domínguez, E.B. Dopman, K. Lohse, S.J. Rometsch, A.A. Comeault, R.M. Merrill, E.S.C. Scordato, S. Singhal, V. Pärssinen, A.C.R. Lackey, S. Kumar, J.I. Meier, N.H. Barton, C. Fraisse, M. Ravinet, J. Kulmuni, Evolutionary Journal of the Linnean Society 3 (2024).","mla":"Stankowski, Sean, et al. “Toward the Integration of Speciation Research.” <i>Evolutionary Journal of the Linnean Society</i>, vol. 3, no. 1, kzae001, Oxford University Press, 2024, doi:<a href=\"https://doi.org/10.1093/evolinnean/kzae001\">10.1093/evolinnean/kzae001</a>.","ista":"Stankowski S, Cutter AD, Satokangas I, Lerch BA, Rolland J, Smadja CM, Segami Marzal JC, Cooney CR, Feulner PGD, Domingos FMCB, North HL, Yamaguchi R, Butlin RK, Wolf JBW, Coughlan J, Heidbreder P, Hernández-Gutiérrez R, Barnard-Kubow KB, Peede D, Rancilhac L, Salvador RB, Thompson KA, Stacy EA, Moyle LC, Garlovsky MD, Maulana A, Kantelinen A, Cacho NI, Schneemann H, Domínguez M, Dopman EB, Lohse K, Rometsch SJ, Comeault AA, Merrill RM, Scordato ESC, Singhal S, Pärssinen V, Lackey ACR, Kumar S, Meier JI, Barton NH, Fraisse C, Ravinet M, Kulmuni J. 2024. Toward the integration of speciation research. Evolutionary Journal of the Linnean Society. 3(1), kzae001.","apa":"Stankowski, S., Cutter, A. D., Satokangas, I., Lerch, B. A., Rolland, J., Smadja, C. M., … Kulmuni, J. (2024). Toward the integration of speciation research. <i>Evolutionary Journal of the Linnean Society</i>. Oxford University Press. <a href=\"https://doi.org/10.1093/evolinnean/kzae001\">https://doi.org/10.1093/evolinnean/kzae001</a>","ama":"Stankowski S, Cutter AD, Satokangas I, et al. Toward the integration of speciation research. <i>Evolutionary Journal of the Linnean Society</i>. 2024;3(1). doi:<a href=\"https://doi.org/10.1093/evolinnean/kzae001\">10.1093/evolinnean/kzae001</a>","ieee":"S. Stankowski <i>et al.</i>, “Toward the integration of speciation research,” <i>Evolutionary Journal of the Linnean Society</i>, vol. 3, no. 1. Oxford University Press, 2024.","chicago":"Stankowski, Sean, Asher D Cutter, Ina Satokangas, Brian A Lerch, Jonathan Rolland, Carole M Smadja, J Carolina Segami Marzal, et al. “Toward the Integration of Speciation Research.” <i>Evolutionary Journal of the Linnean Society</i>. Oxford University Press, 2024. <a href=\"https://doi.org/10.1093/evolinnean/kzae001\">https://doi.org/10.1093/evolinnean/kzae001</a>."},"tmp":{"short":"CC BY-NC (4.0)","image":"/images/cc_by_nc.png","name":"Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0)","legal_code_url":"https://creativecommons.org/licenses/by-nc/4.0/legalcode"},"scopus_import":"1","status":"public","file":[{"relation":"main_file","success":1,"checksum":"db08120a92527acaef476bd93f2b87f9","file_id":"18950","file_size":3935454,"access_level":"open_access","file_name":"2024_EvolJourLinneanSoc_Stankowski.pdf","creator":"dernst","date_updated":"2025-01-29T10:52:40Z","content_type":"application/pdf","date_created":"2025-01-29T10:52:40Z"}],"publisher":"Oxford University Press","has_accepted_license":"1","day":"16","article_type":"original"}]
