Steven S. Vogel, PhD
Affiliations: | NIAAA | National Institutes of Health, Bethesda, MD |
Area:
CaMKII, Dysferlin, FRET microscopyWebsite:
http://neuroscience.nih.gov/Lab.asp?Org_ID=570Google:
"Steven Vogel"Mean distance: 15.09 (cluster 31) | S | N | B | C | P |
Cross-listing: Chemistry Tree
Parents
Sign in to add mentorHagan P. Bayley | grad student | 1984-1985 | Oxford (Chemistry Tree) |
James H. Schwartz | grad student | 1983-1989 | Columbia |
Joshua Zimmerberg | post-doc | 1989-1996 | NIH |
Children
Sign in to add traineeGrace H. Taumoefolau | grad student | Johns Hopkins/NIH GPP (Chemistry Tree) | |
J. Fernando Covian-Nares | post-doc | NIH (Chemistry Tree) | |
W. Frejtag | post-doc | Medical College of Georgia (Chemistry Tree) | |
Y. Ikebuchi | post-doc | Medical College of Georgia (Chemistry Tree) | |
Youngchan Kim | post-doc | NIH (Chemistry Tree) | |
Tuan A. Nguyen | post-doc | NIH (Chemistry Tree) | |
Pabak Sarkar | post-doc | NIH (Cell Biology Tree) | |
Christopher Thaler | post-doc | NIAAA | |
J. V. Veetil | post-doc | NIH (Chemistry Tree) | |
Boris Baibakov | research scientist | Medical College of Georgia (Chemistry Tree) | |
S. V. Koushik | research scientist | NIH (Chemistry Tree) |
BETA: Related publications
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Publications
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Sánchez-Pedreño Jiménez A, Puhl HL, Vogel SS, et al. (2023) Ultrafast fluorescence depolarisation in green fluorescence protein tandem dimers as hydrophobic environment sensitive probes. Physical Chemistry Chemical Physics : Pccp |
Nguyen TA, Puhl HL, Hines K, et al. (2022) Binary-FRET reveals transient excited-state structure associated with activity-dependent CaMKII - NR2B binding and adaptation. Nature Communications. 13: 6335 |
Liput DJ, Nguyen TA, Augustin SM, et al. (2020) A Guide to Fluorescence Lifetime Microscopy and Förster's Resonance Energy Transfer in Neuroscience. Current Protocols in Neuroscience. 94: e108 |
Kim Y, Vogel SS. (2020) Measuring two-photon microscopy ultrafast laser pulse duration at the sample plane using time-correlated single-photon counting. Journal of Biomedical Optics. 25: 1-9 |
Algar WR, Hildebrandt N, Vogel SS, et al. (2019) FRET as a biomolecular research tool - understanding its potential while avoiding pitfalls. Nature Methods. 16: 815-829 |
Kim Y, Puhl HL, Chen E, et al. (2019) Venus Dimers Behave Coherently at Room Temperature. Biophysical Journal |
Nguyen TA, Puhl HL, Pham AK, et al. (2018) Auto-FPFA: An Automated Microscope for Characterizing Genetically Encoded Biosensors. Scientific Reports. 8: 7374 |
Nguyen TA, Taumoefolau G, Kim Y, et al. (2018) Concurrent Homo- and Hetero-FRET Measurements Enhance Studies of Protein Interactions and Enable Development of Dual Biosensors Biophysical Journal. 114: 172a |
Kim Y, Taumoefolau GH, Puhl HL, et al. (2018) Anomalous Ultra-Fast Energy Transfer Suggests Coherent Energy Transfer between Fluorescence Proteins Biophysical Journal. 114: 683a |
Sarkar P, Davis KA, Puhl HL, et al. (2017) Deciphering CaMKII Multimerization Using Fluorescence Correlation Spectroscopy and Homo-FRET Analysis. Biophysical Journal. 112: 1270-1281 |