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Michael P Murrell

Showing results (1-10 of 33) with videos related to

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Nature Communications|December 3, 2024
Author Correction: Mechanical power is maximized during contractile ring-like formation in a biomimetic dividing cell modelRyota Sakamoto, Michael P Murrell
Nature Communications|April 24, 2024
F-actin architecture determines the conversion of chemical energy into mechanical workRyota Sakamoto, Michael P Murrell
Nature Communications|November 10, 2024
Mechanical power is maximized during contractile ring-like formation in a biomimetic dividing cell modelRyota Sakamoto, Michael P Murrell
Communications Biology|July 10, 2024
Composite branched and linear F-actin maximize myosin-induced membrane shape changes in a biomimetic cell modelRyota Sakamoto, Michael P Murrell
Proceedings of the National Academy of Sciences of the United States of America|December 6, 2012
F-actin buckling coordinates contractility and severing in a biomimetic actomyosin cortexMichael P Murrell, Margaret L Gardel
ACS Macro Letters|May 26, 2022
F-Actin Fragmentation Induces Distinct Mechanisms of Stress Relaxation in the Actin CytoskeletonWonyeong Jung, Michael P Murrell, Taeyoon Kim
Soft Matter|October 7, 2022
Interplay between substrate rigidity and tissue fluidity regulates cell monolayer spreadingMichael F Staddon, Michael P Murrell, Shiladitya Banerjee
Chembiochem : a European Journal of Chemical Biology|October 1, 2004
The systems biology of glycosylationMichael P Murrell, Kevin J Yarema, Andre Levchenko
Journal of Visualized Experiments : Jove|September 12, 2022
In Vitro Reconstitution of the Actin Cytoskeleton Inside Giant Unilamellar VesiclesSheng Chen, Zachary Gao Sun, Michael P Murrell
Communications Biology|March 11, 2026
Crosslinked F-actin networks regulate load-dependent energy conversionRyota Sakamoto, Zachary Gao Sun, Michael P Murrell
Pageof 4

Showing results (1-10 of 33) with videos related to

Sort By:
Pageof 4
Nature Communications|December 3, 2024
Author Correction: Mechanical power is maximized during contractile ring-like formation in a biomimetic dividing cell modelRyota Sakamoto, Michael P Murrell
Nature Communications|April 24, 2024
F-actin architecture determines the conversion of chemical energy into mechanical workRyota Sakamoto, Michael P Murrell
Nature Communications|November 10, 2024
Mechanical power is maximized during contractile ring-like formation in a biomimetic dividing cell modelRyota Sakamoto, Michael P Murrell
Communications Biology|July 10, 2024
Composite branched and linear F-actin maximize myosin-induced membrane shape changes in a biomimetic cell modelRyota Sakamoto, Michael P Murrell
Proceedings of the National Academy of Sciences of the United States of America|December 6, 2012
F-actin buckling coordinates contractility and severing in a biomimetic actomyosin cortexMichael P Murrell, Margaret L Gardel
ACS Macro Letters|May 26, 2022
F-Actin Fragmentation Induces Distinct Mechanisms of Stress Relaxation in the Actin CytoskeletonWonyeong Jung, Michael P Murrell, Taeyoon Kim
Soft Matter|October 7, 2022
Interplay between substrate rigidity and tissue fluidity regulates cell monolayer spreadingMichael F Staddon, Michael P Murrell, Shiladitya Banerjee
Chembiochem : a European Journal of Chemical Biology|October 1, 2004
The systems biology of glycosylationMichael P Murrell, Kevin J Yarema, Andre Levchenko
Journal of Visualized Experiments : Jove|September 12, 2022
In Vitro Reconstitution of the Actin Cytoskeleton Inside Giant Unilamellar VesiclesSheng Chen, Zachary Gao Sun, Michael P Murrell
Communications Biology|March 11, 2026
Crosslinked F-actin networks regulate load-dependent energy conversionRyota Sakamoto, Zachary Gao Sun, Michael P Murrell
Pageof 4