Abstract. In this paper we present a purely mechanical analog of the conventional chemo-mechanical modeling of muscle contraction. We abandon the description of kinetics of the power stroke in terms of jump processes and instead resolve the continuous stochastic evolution on an appropriate energy landscape. In general physical terms, we replace hard spin chemical variables by soft spin variables representing mechanical snap-springs. This allows us to treat the case of small and even disappearing barriers and, more importantly, to incorporate the mechanical representation of the power stroke into the theory of Brownian ratchets. The model provides the simplest non-chemical description for the main stages of the biochemical Lymn-Taylor cycle ...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
This thesis is devoted to the modeling of mechanical functioning of myosin II/actin in- teraction, r...
In this paper we present a purely mechanical analog of the conventional chemo-mechanical modeling of...
International audienceIn this paper we present a purely mechanical analog of the conventional chemo-...
The thesis describes the skeletal muscle contraction from a purely (micro)mechanical point of view. ...
A mathematical model of skeletal muscle contraction based on two recent single myosin molecule exper...
The independent force generator and the power-stroke cross-bridge model have dominated the thinking ...
Muscular force generation in response to external stimuli is the result of thermally fluctuating, cy...
Muscular force generation in response to external stimuli is the result of thermally fluctuating, cy...
<div><p>Muscular force generation in response to external stimuli is the result of thermally fluctua...
International audienceIn this paper we report, clarify and broaden various recent efforts to complem...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
This thesis is devoted to the modeling of mechanical functioning of myosin II/actin in- teraction, r...
In this paper we present a purely mechanical analog of the conventional chemo-mechanical modeling of...
International audienceIn this paper we present a purely mechanical analog of the conventional chemo-...
The thesis describes the skeletal muscle contraction from a purely (micro)mechanical point of view. ...
A mathematical model of skeletal muscle contraction based on two recent single myosin molecule exper...
The independent force generator and the power-stroke cross-bridge model have dominated the thinking ...
Muscular force generation in response to external stimuli is the result of thermally fluctuating, cy...
Muscular force generation in response to external stimuli is the result of thermally fluctuating, cy...
<div><p>Muscular force generation in response to external stimuli is the result of thermally fluctua...
International audienceIn this paper we report, clarify and broaden various recent efforts to complem...
International audienceWe propose a chemical-mechanical model of myosin heads in sarcomeres, within t...
In this work, a mathematical model was developed to relate the mechanochemical characterizations of ...
A stochastic model for the action of motor proteins such as kinesin is presented. The mechanical com...
This thesis is devoted to the modeling of mechanical functioning of myosin II/actin in- teraction, r...