The transient increase in free myoplasmic calcium concentration due to depolarization of a skeletal muscle fiber is the net result of the release of calcium from the sarcoplasmic reticulum (SR) and its simultaneous removal by binding to various sites and by reuptake into the SR. We present a procedure for empirically characterizing the calcium removal processes in voltage-clamped fibers and for using such characterization to determine the time course of SR calcium release during a depolarizing pulse. Our results reveal a decline of the SR calcium release rate during depolarization that was not anticipated from simple inspection of the calcium transients
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
Several methods are currently in use to estimate the rate of depolarization-induced calcium release ...
AbstractSeveral methods are currently in use to estimate the rate of depolarization-induced calcium ...
The transient increase in free myoplasmic calcium concentration due to depolarization of a skeletal ...
A general procedure for using myoplasmic calcium transients measured with a metallochromic indicator...
Myoplasmic free calcium transients were measured with antipyrylazo III in voltage clamped segments o...
The role of elevated intracellular calcium concentration ([Ca2+]) in activating calcium release from...
International audienceDepolarization of skeletal muscle fibers induces sarcoplasmic reticulum (SR) C...
Experiments were performed to characterize the properties of the intrinsic Ca2+ buffers in the sarco...
The ability of myofilament space calcium to modulate the sarcoplasmic reticulum (s.r.) calcium relea...
The contractile response in skeletal muscle is controlled by the\ud time course and magnitude of Ca2...
One aim of this article was to determine the resting concentration of free Ca in the sarcoplasmic re...
Calcium ions are important mediators in the mechanism of contraction and relaxation of muscle fibers...
Today it seems well established that calcium ions are the mediators of excitation contraction coupli...
Skeletal muscle fibres are large and highly elongated cells specialized for producing the force requ...
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
Several methods are currently in use to estimate the rate of depolarization-induced calcium release ...
AbstractSeveral methods are currently in use to estimate the rate of depolarization-induced calcium ...
The transient increase in free myoplasmic calcium concentration due to depolarization of a skeletal ...
A general procedure for using myoplasmic calcium transients measured with a metallochromic indicator...
Myoplasmic free calcium transients were measured with antipyrylazo III in voltage clamped segments o...
The role of elevated intracellular calcium concentration ([Ca2+]) in activating calcium release from...
International audienceDepolarization of skeletal muscle fibers induces sarcoplasmic reticulum (SR) C...
Experiments were performed to characterize the properties of the intrinsic Ca2+ buffers in the sarco...
The ability of myofilament space calcium to modulate the sarcoplasmic reticulum (s.r.) calcium relea...
The contractile response in skeletal muscle is controlled by the\ud time course and magnitude of Ca2...
One aim of this article was to determine the resting concentration of free Ca in the sarcoplasmic re...
Calcium ions are important mediators in the mechanism of contraction and relaxation of muscle fibers...
Today it seems well established that calcium ions are the mediators of excitation contraction coupli...
Skeletal muscle fibres are large and highly elongated cells specialized for producing the force requ...
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
Several methods are currently in use to estimate the rate of depolarization-induced calcium release ...
AbstractSeveral methods are currently in use to estimate the rate of depolarization-induced calcium ...