Lea Marie Becker
10 Publications
2026 |
Research Data |
IST-REx-ID: 21145 |
L. M. Becker, P. Schanda, and C. Chipot, “Additional Data for ‘Aromatic Ring Flips Reveal Reshaping of Protein Dynamics in Crystals and Complexes.’” Institute of Science and Technology Austria, 2026.
[Published Version]
View
| Files available
| DOI
2026 |
Research Data |
IST-REx-ID: 21284 |
L. M. Becker and P. Schanda, “Research data for ‘Accelerated 19F biomolecular magic-angle spinning NMR with paramagnetic dopants.’” Institute of Science and Technology Austria, 2026.
View
| Files available
| DOI
2025 |
Research Data |
IST-REx-ID: 20641 |
L. M. Becker and P. Schanda, “Data for ‘Aromatic Ring Flips Reveal Reshaping of Protein Dynamics in Crystals and Complexes.’” Institute of Science and Technology Austria, 2025.
View
| Files available
| DOI
2024 |
Published |
Journal Article |
IST-REx-ID: 17161 |
K. Aebischer, L. M. Becker, P. Schanda, and M. Ernst, “Evaluating the motional timescales contributing to averaged anisotropic interactions in MAS solid-state NMR,” Magnetic Resonance, vol. 5, no. 1. Copernicus Publications, pp. 69–86, 2024.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 12114 |
D. F. Gauto et al., “Aromatic ring flips in differently packed ubiquitin protein crystals from MAS NMR and MD,” Journal of Structural Biology: X, vol. 7. Elsevier, 2023.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 14036 |
F. Napoli, L. M. Becker, and P. Schanda, “Protein dynamics detected by magic-angle spinning relaxation dispersion NMR,” Current Opinion in Structural Biology, vol. 82, no. 10. Elsevier, 2023.
[Published Version]
View
| Files available
| DOI
| WoS
| PubMed | Europe PMC
2023 |
Research Data |
IST-REx-ID: 12497 |
L. M. Becker and P. Schanda, “Research data to: The rigid core and flexible surface of amyloid fibrils probed by magic-angle-spinning NMR spectroscopy of aromatic residues.” Institute of Science and Technology Austria, 2023.
[Published Version]
View
| Files available
| DOI
2023 |
Published |
Journal Article |
IST-REx-ID: 12675 |
L. M. Becker et al., “The rigid core and flexible surface of amyloid fibrils probed by Magic‐Angle Spinning NMR of aromatic residues,” Angewandte Chemie International Edition, vol. 62, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
| WoS
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 14835 |
L. M. Becker et al., “Der starre Kern und die flexible Oberfläche von Amyloidfibrillen – Magic‐Angle‐Spinning NMR Spektroskopie von aromatischen Resten,” Angewandte Chemie, vol. 135, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
2023 |
Published |
Other Publication |
IST-REx-ID: 14861 |
L. M. Becker et al., Cover Picture: The rigid core and flexible surface of amyloid fibrils probed by Magic‐Angle‐Spinning NMR spectroscopy of aromatic residues, vol. 62, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
| Download Published Version (ext.)
Grants
10 Publications
2026 |
Research Data |
IST-REx-ID: 21145 |
L. M. Becker, P. Schanda, and C. Chipot, “Additional Data for ‘Aromatic Ring Flips Reveal Reshaping of Protein Dynamics in Crystals and Complexes.’” Institute of Science and Technology Austria, 2026.
[Published Version]
View
| Files available
| DOI
2026 |
Research Data |
IST-REx-ID: 21284 |
L. M. Becker and P. Schanda, “Research data for ‘Accelerated 19F biomolecular magic-angle spinning NMR with paramagnetic dopants.’” Institute of Science and Technology Austria, 2026.
View
| Files available
| DOI
2025 |
Research Data |
IST-REx-ID: 20641 |
L. M. Becker and P. Schanda, “Data for ‘Aromatic Ring Flips Reveal Reshaping of Protein Dynamics in Crystals and Complexes.’” Institute of Science and Technology Austria, 2025.
View
| Files available
| DOI
2024 |
Published |
Journal Article |
IST-REx-ID: 17161 |
K. Aebischer, L. M. Becker, P. Schanda, and M. Ernst, “Evaluating the motional timescales contributing to averaged anisotropic interactions in MAS solid-state NMR,” Magnetic Resonance, vol. 5, no. 1. Copernicus Publications, pp. 69–86, 2024.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 12114 |
D. F. Gauto et al., “Aromatic ring flips in differently packed ubiquitin protein crystals from MAS NMR and MD,” Journal of Structural Biology: X, vol. 7. Elsevier, 2023.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 14036 |
F. Napoli, L. M. Becker, and P. Schanda, “Protein dynamics detected by magic-angle spinning relaxation dispersion NMR,” Current Opinion in Structural Biology, vol. 82, no. 10. Elsevier, 2023.
[Published Version]
View
| Files available
| DOI
| WoS
| PubMed | Europe PMC
2023 |
Research Data |
IST-REx-ID: 12497 |
L. M. Becker and P. Schanda, “Research data to: The rigid core and flexible surface of amyloid fibrils probed by magic-angle-spinning NMR spectroscopy of aromatic residues.” Institute of Science and Technology Austria, 2023.
[Published Version]
View
| Files available
| DOI
2023 |
Published |
Journal Article |
IST-REx-ID: 12675 |
L. M. Becker et al., “The rigid core and flexible surface of amyloid fibrils probed by Magic‐Angle Spinning NMR of aromatic residues,” Angewandte Chemie International Edition, vol. 62, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
| WoS
| PubMed | Europe PMC
2023 |
Published |
Journal Article |
IST-REx-ID: 14835 |
L. M. Becker et al., “Der starre Kern und die flexible Oberfläche von Amyloidfibrillen – Magic‐Angle‐Spinning NMR Spektroskopie von aromatischen Resten,” Angewandte Chemie, vol. 135, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
2023 |
Published |
Other Publication |
IST-REx-ID: 14861 |
L. M. Becker et al., Cover Picture: The rigid core and flexible surface of amyloid fibrils probed by Magic‐Angle‐Spinning NMR spectroscopy of aromatic residues, vol. 62, no. 19. Wiley, 2023.
[Published Version]
View
| Files available
| DOI
| Download Published Version (ext.)