AbstractMyofilament length-dependent activation is a universal property of striated muscle, yet the molecular mechanisms that underlie this phenomenon are incompletely understood. Additionally, the rate by which sarcomere length (SL) is sensed and then transduced to form length-dependent activation is unknown. Here, using isolated guinea-pig myocardium, we employed a rapid solution-switch single myofibril technique that allows for the study of contractile action/relaxation dynamics in the virtual absence of diffusion delays. We compared contraction kinetics obtained at submaximal activation at steady-state SL with contractions observed after rapid SL ramps to that same SL just before activation. Neither the activation and relaxation kinetic...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
This article attempts to identify the key aspects of sarcomere inhomogeneity and the dynamics of sar...
© 2016 The Authors.Many causes of heart muscle diseases and skeletal muscle diseases are inherited a...
AbstractMyofilament length-dependent activation is a universal property of striated muscle, yet the ...
AbstractKinetics of force development and relaxation after rapid application and removal of Ca2+ wer...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
AbstractThe kinetics of Ca2+-induced contractions of chemically skinned guinea pig trabeculae was st...
AbstractTo study the dynamics of individual half-sarcomeres in striated muscle contraction, myofibri...
ABSTRACT To study the dynamics of individual half-sarcomeres in striated muscle contraction, myofibr...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
AbstractThe cellular basis of the length-dependent increases in contractile force in the beating hea...
In healthy hearts, ventricular ejection is determined by three myofibrillar properties; force, force...
AbstractIt is generally assumed that the myofilament lattice in intact (i.e., nonskinned) striated m...
SUMMARY We studied sarcomere performance in single isolated intact frog atrial cells using tech-niqu...
Rationale: Calcium (Ca2+) activation of the thin filament cannot solely explain force regulation in ...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
This article attempts to identify the key aspects of sarcomere inhomogeneity and the dynamics of sar...
© 2016 The Authors.Many causes of heart muscle diseases and skeletal muscle diseases are inherited a...
AbstractMyofilament length-dependent activation is a universal property of striated muscle, yet the ...
AbstractKinetics of force development and relaxation after rapid application and removal of Ca2+ wer...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
AbstractThe kinetics of Ca2+-induced contractions of chemically skinned guinea pig trabeculae was st...
AbstractTo study the dynamics of individual half-sarcomeres in striated muscle contraction, myofibri...
ABSTRACT To study the dynamics of individual half-sarcomeres in striated muscle contraction, myofibr...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
AbstractThe cellular basis of the length-dependent increases in contractile force in the beating hea...
In healthy hearts, ventricular ejection is determined by three myofibrillar properties; force, force...
AbstractIt is generally assumed that the myofilament lattice in intact (i.e., nonskinned) striated m...
SUMMARY We studied sarcomere performance in single isolated intact frog atrial cells using tech-niqu...
Rationale: Calcium (Ca2+) activation of the thin filament cannot solely explain force regulation in ...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
This article attempts to identify the key aspects of sarcomere inhomogeneity and the dynamics of sar...
© 2016 The Authors.Many causes of heart muscle diseases and skeletal muscle diseases are inherited a...