International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within the classical description of rigid sliding filaments. In our case, myosin heads have two mechanical degrees-of-freedom (dofs) - one of which associated with the so-called power stroke - and two possible chemical states, i.e. bound to an actin site or not. Our major motivations are twofold: (1) to derive a multiscale coupled chemical-mechanical model, and (2) to thus account - at the macroscopic scale - for mechanical phenomena that are out of reach for classical muscle models. This model is first written in the form of Langevin stochastic equations, and we are then able to obtain the corresponding Fokker-Planck partial differential equations g...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
International audienceWe propose a muscle chemo-mechanical model by which cross-bridges in sarcomere...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
We propose a muscle chemo-mechanical model by which myosin heads - that can chemically bind to actin...
We propose a muscle chemo-mechanical model by which myosin heads - that can chemically bind to actin...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
International audienceWe propose a muscle chemo-mechanical model by which cross-bridges in sarcomere...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
We propose a muscle chemo-mechanical model by which myosin heads - that can chemically bind to actin...
We propose a muscle chemo-mechanical model by which myosin heads - that can chemically bind to actin...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
International audienceWe propose a muscle chemo-mechanical model by which cross-bridges in sarcomere...