Understanding the dynamics of a cardiac muscle twitch contraction is complex because it requires a detailed understanding of the kinetic processes of the Ca2+ transient, thin-filament activation, and the myosin–actin cross-bridge chemomechanical cycle. Each of these steps has been well defined individually, but understanding how all three of the processes operate in combination is a far more complex problem. Computational modeling has the potential to provide detailed insight into each of these processes, how the dynamics of each process affect the complexity of contractile behavior, and how perturbations such as mutations in sarcomere proteins affect the complex interactions of all of these processes. The mechanisms involved in relaxation ...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
To understand how pathology‐induced changes in contractile protein isoforms modulate cardiac muscle ...
To understand how pathology-induced changes in contractile protein isoforms modulate cardiac muscle ...
To understand how pathology-induced changes in contractile protein isoforms modulate cardiac muscle ...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
The determinants of relaxation in cardiac muscle are poorly understood, yet compromised relaxation a...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
One of the complexities of understanding the pathology of familial forms of cardiac diseases is the ...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
To understand how pathology‐induced changes in contractile protein isoforms modulate cardiac muscle ...
To understand how pathology-induced changes in contractile protein isoforms modulate cardiac muscle ...
To understand how pathology-induced changes in contractile protein isoforms modulate cardiac muscle ...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
The determinants of relaxation in cardiac muscle are poorly understood, yet compromised relaxation a...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
One of the complexities of understanding the pathology of familial forms of cardiac diseases is the ...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We propose four novel mathematical models, describing the microscopic mechanisms of force generation...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...