Research data for the publication "Dense 4D nanoscale reconstruction of living brain tissue"
Danzl JG. 2023. Research data for the publication ‘Dense 4D nanoscale reconstruction of living brain tissue’, Institute of Science and Technology Austria, 10.15479/AT:ISTA:12817.
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Creator
Corresponding author has ISTA affiliation
Contributor
Velicky, PhilippISTA
;
Miguel Villalba, EderISTA
;
Michalska, Julia MISTA
;
Lyudchik, JuliaISTA
;
Wei, Donglai
;
Lin, Zudi
;
Watson, JakeISTA
;
Troidl, Jakob
;
Beyer, Johanna
;
Ben Simon, YoavISTA
;
Sommer, Christoph MISTA
;
Jahr, WiebkeISTA
;
Cenameri, AlbanISTA
;
Broichhagen, Johannes
;
Grant, Seth G. N.
;
Jonas, Peter MISTA
;
Novarino, GaiaISTA
;
Pfister, Hanspeter
;
Bickel, BerndISTA
Department
Abstract
3D-reconstruction of living brain tissue down to individual synapse level would create opportunities for decoding the dynamics and structure-function relationships of the brain’s complex and dense information processing network. However, it has been hindered by insufficient 3D-resolution, inadequate signal-to-noise-ratio, and prohibitive light burden in optical imaging, whereas electron microscopy is inherently static. Here we solved these challenges by developing an integrated optical/machine learning technology, LIONESS (Live Information-Optimized Nanoscopy Enabling Saturated Segmentation). It leverages optical modifications to stimulated emission depletion (STED) microscopy in comprehensively, extracellularly labelled tissue and prior information on sample structure via machine learning to simultaneously achieve isotropic super-resolution, high signal-to-noise-ratio, and compatibility with living tissue. This allows dense deep-learning-based instance segmentation and 3D-reconstruction at synapse level incorporating molecular, activity, and morphodynamic information. LIONESS opens up avenues for studying the dynamic functional (nano-)architecture of living brain tissue.
Publishing Year
Date Published
2023-05-19
Publisher
Institute of Science and Technology Austria
Acknowledgement
We thank J. Vorlaufer, N. Agudelo, A. Wartak for microscope maintenance and troubleshooting, C. Kreuzinger and A. Freeman for technical assistance, and M. Šuplata for hardware control support, and Márcia Cunha dos Santos for initial exploration of software. We thank Paul Henderson for advice on deep-learning training and Michael Sixt, Scott Boyd, and Tamara Weiss for discussions and critical reading of the manuscript. Luke Lavis (Janelia Research Campus) generously provided JF585-HaloTag ligand.
Acknowledged SSUs
IST-REx-ID
Cite this
Danzl JG. Research data for the publication “Dense 4D nanoscale reconstruction of living brain tissue.” 2023. doi:10.15479/AT:ISTA:12817
Danzl, J. G. (2023). Research data for the publication “Dense 4D nanoscale reconstruction of living brain tissue.” Institute of Science and Technology Austria. https://doi.org/10.15479/AT:ISTA:12817
Danzl, Johann G. “Research Data for the Publication ‘Dense 4D Nanoscale Reconstruction of Living Brain Tissue.’” Institute of Science and Technology Austria, 2023. https://doi.org/10.15479/AT:ISTA:12817.
J. G. Danzl, “Research data for the publication ‘Dense 4D nanoscale reconstruction of living brain tissue.’” Institute of Science and Technology Austria, 2023.
Danzl JG. 2023. Research data for the publication ‘Dense 4D nanoscale reconstruction of living brain tissue’, Institute of Science and Technology Austria, 10.15479/AT:ISTA:12817.
Danzl, Johann G. Research Data for the Publication “Dense 4D Nanoscale Reconstruction of Living Brain Tissue.” Institute of Science and Technology Austria, 2023, doi:10.15479/AT:ISTA:12817.
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