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Kimberly L Weirich

Showing results (1-10 of 11) with videos related to

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Biorxiv : the Preprint Server for Biology|June 9, 2023
Direct detection of deformation modes on varying length scales in active biopolymer networksSamantha Stam, Margaret L Gardel, Kimberly L Weirich
Biophysical Journal|January 21, 2010
Bilayer edges catalyze supported lipid bilayer formationKimberly L Weirich, Jacob N Israelachvili, D Kuchnir Fygenson
Biophysical Journal|April 2, 2021
Actin bundle architecture and mechanics regulate myosin II force generationKimberly L Weirich, Samantha Stam, Edwin Munro, et al.
Soft Matter|February 5, 2020
Tuning molecular motor transport through cytoskeletal filament network organizationMonika Scholz, Kimberly L Weirich, Margaret L Gardel, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 23, 2019
Self-organizing motors divide active liquid dropletsKimberly L Weirich, Kinjal Dasbiswas, Thomas A Witten, et al.
Soft Matter|June 11, 2020
Tuning shape and internal structure of protein droplets via biopolymer filamentsDanielle R Scheff, Kimberly L Weirich, Kinjal Dasbiswas, et al.
Soft Matter|September 29, 2025
Protein condensates induce biopolymer filament bundling and network remodeling <i>via</i> capillary interactionsCarolyn A Feigeles, Artis Brasovs, Adam Puchalski, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 17, 2017
Liquid behavior of cross-linked actin bundlesKimberly L Weirich, Shiladitya Banerjee, Kinjal Dasbiswas, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 9, 2017
Filament rigidity and connectivity tune the deformation modes of active biopolymer networksSamantha Stam, Simon L Freedman, Shiladitya Banerjee, et al.
Journal of Visualized Experiments : Jove|July 28, 2025
Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal DropsSamantha Stam, Steven Huntley, Carolyn A Feigeles, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Biorxiv : the Preprint Server for Biology|June 9, 2023
Direct detection of deformation modes on varying length scales in active biopolymer networksSamantha Stam, Margaret L Gardel, Kimberly L Weirich
Biophysical Journal|January 21, 2010
Bilayer edges catalyze supported lipid bilayer formationKimberly L Weirich, Jacob N Israelachvili, D Kuchnir Fygenson
Biophysical Journal|April 2, 2021
Actin bundle architecture and mechanics regulate myosin II force generationKimberly L Weirich, Samantha Stam, Edwin Munro, et al.
Soft Matter|February 5, 2020
Tuning molecular motor transport through cytoskeletal filament network organizationMonika Scholz, Kimberly L Weirich, Margaret L Gardel, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 23, 2019
Self-organizing motors divide active liquid dropletsKimberly L Weirich, Kinjal Dasbiswas, Thomas A Witten, et al.
Soft Matter|June 11, 2020
Tuning shape and internal structure of protein droplets via biopolymer filamentsDanielle R Scheff, Kimberly L Weirich, Kinjal Dasbiswas, et al.
Soft Matter|September 29, 2025
Protein condensates induce biopolymer filament bundling and network remodeling <i>via</i> capillary interactionsCarolyn A Feigeles, Artis Brasovs, Adam Puchalski, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 17, 2017
Liquid behavior of cross-linked actin bundlesKimberly L Weirich, Shiladitya Banerjee, Kinjal Dasbiswas, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 9, 2017
Filament rigidity and connectivity tune the deformation modes of active biopolymer networksSamantha Stam, Simon L Freedman, Shiladitya Banerjee, et al.
Journal of Visualized Experiments : Jove|July 28, 2025
Tuning the Contractility and Deformation Modes of Active Actin-Based Assemblies In Vitro: From Two-Dimensional Active Networks to Liquid Crystal DropsSamantha Stam, Steven Huntley, Carolyn A Feigeles, et al.
Pageof 2