Suivre
Samantha Stam
Samantha Stam
Postdoctoral Scholar, Huntsman Cancer Institute, University of Utah
Adresse e-mail validée de hci.utah.edu
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Filament rigidity and connectivity tune the deformation modes of active biopolymer networks
S Stam, SL Freedman, S Banerjee, KL Weirich, AR Dinner, ML Gardel
Proceedings of the National Academy of Sciences 114 (47), E10037-E10045, 2017
872017
Isoforms confer characteristic force generation and mechanosensation by myosin II filaments
S Stam, J Alberts, ML Gardel, E Munro
Biophysical journal 108 (8), 1997-2006, 2015
872015
Actin bundle architecture and mechanics regulate myosin II force generation
KL Weirich, S Stam, E Munro, ML Gardel
Biophysical Journal 120 (10), 1957-1970, 2021
202021
Cutting through the noise: the mechanics of intracellular transport
S Stam, ML Gardel
Developmental cell 30 (4), 365-366, 2014
72014
Tension-sensing by myosin motors as a function of duty-ratio and network stiffness
JB Alberts, S Stam, ML Gardel, EM Munro
Molecular Biology of the Cell 23, 2012
32012
Nascent adhesions shorten the period of lamellipodium protrusion through the Brownian ratchet mechanism
KR Carney, AM Khan, S Stam, SC Samson, N Mittal, SJ Han, TC Bidone, ...
Molecular biology of the cell 34 (12), ar115, 2023
2023
Direct detection of deformation modes on varying length scales in active biopolymer networks
S Stam, ML Gardel, KL Weirich
bioRxiv, 2023
2023
Tunable deformation modes shape contractility in active biopolymer networks
S Stam, S Banerjee, K Weirich, S Freedman, A Dinner, M Gardel
APS March Meeting Abstracts 2017, C4. 006, 2017
2017
Active turnover regulates pattern formation and stress transmission in disordered acto-myosin networks
P McCall, S Stam, D Kovar, M Gardel
APS March Meeting Abstracts 2017, M1. 273, 2017
2017
Force Exertion and Transmission in Cross-Linked Actin Networks
S Stam
The University of Chicago, 2017
2017
Critical forces for actin filament buckling and force transmission influence transport in actomyosin networks
S Stam, M Gardel
APS March Meeting Abstracts 2016, B36. 014, 2016
2016
Viscoelastic properties of actin networks influence material transport
S Stam, K Weirich, M Gardel
APS March Meeting Abstracts 2015, J48. 008, 2015
2015
Regulation of myosin II activity by actin architecture
K Weirich, S Stam, P McCall, E Munro, M Gardel
APS March Meeting Abstracts 2015, D49. 008, 2015
2015
Force generation by Myosin II Filaments in Compliant Networks
S Stam, J Alberts, ML Gardel, E Munro
arXiv preprint arXiv:1404.3262, 2014
2014
Visualization of the material response in an actomyosin network at the onset of internal motor activity
S Stam, M Gardel
APS March Meeting Abstracts 2014, G11. 002, 2014
2014
Mechanical output of myosin II motors is regulated by myosin filament size and actin network mechanics
S Stam, J Alberts, M Gardel, E Munro
APS March Meeting Abstracts 2013, Q1. 210, 2013
2013
PNAS PLUS
S Stam, SL Freedman, S Banerjee, KL Weirich, AR Dinner, ML Gardel
Sea 10112, E10121, 0
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