Actomyosin networks give cells the ability to move and divide. These networks contract and expand while being driven by active energy-consuming processes such as motor protein walking and actin polymerization. Actin dynamics is also regulated by actin-binding proteins, such as the actin-related protein 2/3 (Arp2/3) complex. This complex generates branched filaments thereby changing the overall organization of the network. In this work, the spatiotemporal patterns of dynamical actin assembly accompanying the branching-induced reorganization caused by Arp2/3 were studied using a computational model (MEDYAN); this model simulates actomyosin network dynamics as a result of chemical reactions whose rates are modulated by rapid mechanical equilib...
International audienceTissue remodeling requires cell shape changes associated with pulsation and fl...
Cytoskeletal networks, which are essentially motor-filament assemblies, play a major role in many de...
Actomyosin contractility regulates various biological processes including cell migration, muscle con...
This repository contains the inputfiles for MEDYAN and the processed MATLAB files for three trials c...
International audienceCells use their dynamic actin network to control their mechanics and motility....
Cells employ networks of filamentous biopolymers to achieve shape changes and exert migratory forces...
Actin networks are essential for living cells to move, reproduce, and sense their environments. The ...
International audienceActomyosin contractility plays a central role in a wide range of cellular proc...
Branched actin filaments are found in many key cellular structures. Branches are nucleated by the Ar...
Cortical actin networks are highly dynamic and play critical roles in shaping the mechanical propert...
In cells, many vital processes involve myosin-driven motility that actively remodels the actin cytos...
Filamentous actin (F-actin) and non-muscle myosin II motors drive cell motility and cell shape chang...
AbstractBackground: Cellular movements are powered by the assembly and disassembly of actin filament...
The actin cytoskeleton—a complex, nonequilibrium network consisting of filaments, actin-crosslinking...
This dissertation is based on my graduate research studying complex matter in multiple areas of biol...
International audienceTissue remodeling requires cell shape changes associated with pulsation and fl...
Cytoskeletal networks, which are essentially motor-filament assemblies, play a major role in many de...
Actomyosin contractility regulates various biological processes including cell migration, muscle con...
This repository contains the inputfiles for MEDYAN and the processed MATLAB files for three trials c...
International audienceCells use their dynamic actin network to control their mechanics and motility....
Cells employ networks of filamentous biopolymers to achieve shape changes and exert migratory forces...
Actin networks are essential for living cells to move, reproduce, and sense their environments. The ...
International audienceActomyosin contractility plays a central role in a wide range of cellular proc...
Branched actin filaments are found in many key cellular structures. Branches are nucleated by the Ar...
Cortical actin networks are highly dynamic and play critical roles in shaping the mechanical propert...
In cells, many vital processes involve myosin-driven motility that actively remodels the actin cytos...
Filamentous actin (F-actin) and non-muscle myosin II motors drive cell motility and cell shape chang...
AbstractBackground: Cellular movements are powered by the assembly and disassembly of actin filament...
The actin cytoskeleton—a complex, nonequilibrium network consisting of filaments, actin-crosslinking...
This dissertation is based on my graduate research studying complex matter in multiple areas of biol...
International audienceTissue remodeling requires cell shape changes associated with pulsation and fl...
Cytoskeletal networks, which are essentially motor-filament assemblies, play a major role in many de...
Actomyosin contractility regulates various biological processes including cell migration, muscle con...