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Physical Review. E|September 18, 2020
Correcting molecular transition rates measured by single-molecule force spectroscopy for limited temporal resolutionDavid R Jacobson, Thomas T PerkinsProceedings of the National Academy of Sciences of the United States of America|March 23, 2021
Free-energy changes of bacteriorhodopsin point mutants measured by single-molecule force spectroscopyDavid R Jacobson, Thomas T PerkinsProceedings of the National Academy of Sciences of the United States of America|February 7, 2024
Quantifying a light-induced energetic change in bacteriorhodopsin by force spectroscopyDavid R Jacobson, Thomas T PerkinsBiophysical Journal|December 29, 2019
Membrane-Protein Unfolding Intermediates Detected with Enhanced Precision Using a Zigzag Force RampDavid R Jacobson, Lyle Uyetake, Thomas T PerkinsPhysical Review Letters|August 27, 2020
Quantifying the Native Energetics Stabilizing Bacteriorhodopsin by Single-Molecule Force SpectroscopyHao Yu, David R Jacobson, Hao Luo, et al.Annual Review of Biophysics|April 30, 2014
Ångström-precision optical traps and applicationsThomas T PerkinsChemical Reviews|February 6, 2026
Single Molecule Force Spectroscopy to Probe Intermediates and Energetics of Membrane Protein FoldingDavid R JacobsonJournal of the American Chemical Society|January 7, 2011
Overstretching DNA at 65 pN does not require peeling from free ends or nicksD Hern Paik, Thomas T PerkinsMethods in Molecular Biology (Clifton, N.J.)|May 11, 2012
Single-molecule optical-trapping measurements with DNA anchored to an array of gold nanopostsD Hern Paik, Thomas T PerkinsBiophysical Journal|August 21, 2018
FEATHER: Automated Analysis of Force Spectroscopy Unbinding and Unfolding Data via a Bayesian AlgorithmPatrick R Heenan, Thomas T PerkinsPageof 7