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Current Opinion in Chemical Biology|September 4, 2019
Probing microscopic conformational dynamics in folding reactions by measuring transition pathsNoel Q Hoffer, Michael T WoodsideThe Journal of Physical Chemistry. B|July 14, 2018
Testing Kinetic Identities Involving Transition-Path Properties Using Single-Molecule Folding TrajectoriesKrishna Neupane, Noel Q Hoffer, Michael T WoodsideProceedings of the National Academy of Sciences of the United States of America|December 2, 2021
Observing the base-by-base search for native structure along transition paths during the folding of single nucleic acid hairpinsNoel Q Hoffer, Krishna Neupane, Michael T WoodsideThe Journal of Chemical Physics|September 24, 2018
Transition-path properties for folding reactions in the limit of small barriersAndrew G T Pyo, Noel Q Hoffer, Krishna Neupane, et al.Proceedings of the National Academy of Sciences of the United States of America|April 7, 2019
Measuring the average shape of transition paths during the folding of a single biological moleculeNoel Q Hoffer, Krishna Neupane, Andrew G T Pyo, et al.Nature Communications|August 7, 2021
Structural dynamics of single SARS-CoV-2 pseudoknot molecules reveal topologically distinct conformersKrishna Neupane, Meng Zhao, Aaron Lyons, et al.Physical Review Letters|July 21, 2018
Measuring the Local Velocity along Transition Paths during the Folding of Single Biological MoleculesKrishna Neupane, Noel Q Hoffer, M T WoodsideAngewandte Chemie (International Ed. in English)|November 8, 2011
Signal-pair correlation analysis of single-molecule trajectoriesArmin Hoffmann, Michael T WoodsideBiophysical Journal|July 3, 2016
Quantifying Instrumental Artifacts in Folding Kinetics Measured by Single-Molecule Force SpectroscopyKrishna Neupane, Michael T WoodsideNature Chemical Biology|July 13, 2021
Mechanical strength of RNA knot in Zika virus protects against cellular defensesMeng Zhao, Michael T WoodsidePageof 8