AbstractSpatially explicit stochastic simulations of myosin S1 heads attaching to a single actin filament were used to investigate the process of force development in contracting muscle. Filament compliance effects were incorporated by adjusting the spacing between adjacent actin binding sites and adjacent myosin heads in response to cross-bridge attachment/detachment events. Appropriate model parameters were determined by multi-dimensional optimization and used to simulate force development records corresponding to different levels of Ca2+ activation. Simulations in which the spacing between both adjacent actin binding sites and adjacent myosin S1 heads changed by ∼0.06nm after cross-bridge attachment/detachment events 1), exhibited tensio...
AbstractThe force response of activated striated muscle to length perturbations includes the so-call...
The force response of activated striated muscle to length perturbations includes the so-called C-pro...
AbstractIn striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and a...
AbstractSpatially explicit stochastic simulations of myosin S1 heads attaching to a single actin fil...
AbstractThe presence of compliance in the lattice of filaments in muscle raises a number of concerns...
A discrete model of the interaction between individual myofilaments was developed to study the stiff...
A model has been developed for characterizing the interaction between strongly-binding myosin cross-...
The newly discovered extensibility of actin and myosin filaments challenges the foundation of the th...
We have developed a model for the equilibrium attachment and detachment of myosin cross-bridges to a...
The stiffness of the myosin cross-bridges is a key factor in analysing possible scenarios to explain...
Purpose: The aim of this study was to extend current half-sarcomere models by involving a recently f...
AbstractThe cross-bridge stiffness can be used to estimate the number of S1 that are bound to actin ...
In a spatially explicit stochastic simulation of myosin S1 heads attaching to a single actin filamen...
<div><p>Striated muscle contraction is a highly cooperative process initiated by Ca<sup>2+</sup> bin...
AbstractThe contribution of thick and thin filaments to skeletal muscle fiber compliance has been sh...
AbstractThe force response of activated striated muscle to length perturbations includes the so-call...
The force response of activated striated muscle to length perturbations includes the so-called C-pro...
AbstractIn striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and a...
AbstractSpatially explicit stochastic simulations of myosin S1 heads attaching to a single actin fil...
AbstractThe presence of compliance in the lattice of filaments in muscle raises a number of concerns...
A discrete model of the interaction between individual myofilaments was developed to study the stiff...
A model has been developed for characterizing the interaction between strongly-binding myosin cross-...
The newly discovered extensibility of actin and myosin filaments challenges the foundation of the th...
We have developed a model for the equilibrium attachment and detachment of myosin cross-bridges to a...
The stiffness of the myosin cross-bridges is a key factor in analysing possible scenarios to explain...
Purpose: The aim of this study was to extend current half-sarcomere models by involving a recently f...
AbstractThe cross-bridge stiffness can be used to estimate the number of S1 that are bound to actin ...
In a spatially explicit stochastic simulation of myosin S1 heads attaching to a single actin filamen...
<div><p>Striated muscle contraction is a highly cooperative process initiated by Ca<sup>2+</sup> bin...
AbstractThe contribution of thick and thin filaments to skeletal muscle fiber compliance has been sh...
AbstractThe force response of activated striated muscle to length perturbations includes the so-call...
The force response of activated striated muscle to length perturbations includes the so-called C-pro...
AbstractIn striated muscle thin filament activation is initiated by Ca2+ binding to troponin C and a...