AbstractTo elucidate the temperature dependence and underlying thermodynamic determinants of the elementary Ca2+ release from the sarcoplasmic reticulum, we characterized Ca2+ sparks originating from ryanodine receptors (RyRs) in rat cardiomyocytes over a wide range of temperature. From 35°C to 10°C, the normalized fluo-3 fluorescence of Ca2+ sparks decreased monotonically, but the Δ[Ca2+]i were relatively unchanged due to increased resting [Ca2+]i. The time-to-peak of Ca2+ sparks, which represents the RyR Ca2+ release duration, was prolonged by 37% from 35°C to 10°C. An Arrhenius plot of the data identified a jump of apparent activation energy from 5.2 to 14.6kJ/mol at 24.8°C, which presumably reflects a transition of sarcoplasmic reticulu...
AbstractThe elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, wh...
AbstractFor a single or a group of Markov channels gating reversibly, distributions of open and clos...
AbstractFast Ca2+ release kinetics were measured in cardiac sarcoplasmic reticulum vesicles actively...
AbstractTo elucidate the temperature dependence and underlying thermodynamic determinants of the ele...
To elucidate the temperature dependence and underlying thermodynamic determinants of the elementary ...
Digital imaging microscopy of fluo-3 fluorescence was used to study the velocity and shape of intrac...
International audience1. We sought to evaluate the contribution of the sarcoplasmic reticulum (SR) C...
AbstractUsing a combination of experimental and numerical approaches, we have tested two different a...
In cardiac muscle and amphibian skeletal muscle, the intracellular Ca2+ release that signals contrac...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
For a single or a group of Markov channels gating reversibly, distributions of open and closed times...
The relative contributions of the different Ca transport systems involved in cardiac relaxation were...
AbstractA Ca2+ spark arises when a cluster of sarcoplasmic reticulum (SR) channels (ryanodine recept...
International audienceCa2+ sparks, the elementary units of sarcoplasmic reticulum (SR) Ca2+ release ...
AbstractIn cardiac muscle, excitation-contraction (E-C) coupling is determined by the ability of the...
AbstractThe elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, wh...
AbstractFor a single or a group of Markov channels gating reversibly, distributions of open and clos...
AbstractFast Ca2+ release kinetics were measured in cardiac sarcoplasmic reticulum vesicles actively...
AbstractTo elucidate the temperature dependence and underlying thermodynamic determinants of the ele...
To elucidate the temperature dependence and underlying thermodynamic determinants of the elementary ...
Digital imaging microscopy of fluo-3 fluorescence was used to study the velocity and shape of intrac...
International audience1. We sought to evaluate the contribution of the sarcoplasmic reticulum (SR) C...
AbstractUsing a combination of experimental and numerical approaches, we have tested two different a...
In cardiac muscle and amphibian skeletal muscle, the intracellular Ca2+ release that signals contrac...
AbstractCalcium sparks are local regenerative releases of Ca2+ from a cluster of ryanodine receptors...
For a single or a group of Markov channels gating reversibly, distributions of open and closed times...
The relative contributions of the different Ca transport systems involved in cardiac relaxation were...
AbstractA Ca2+ spark arises when a cluster of sarcoplasmic reticulum (SR) channels (ryanodine recept...
International audienceCa2+ sparks, the elementary units of sarcoplasmic reticulum (SR) Ca2+ release ...
AbstractIn cardiac muscle, excitation-contraction (E-C) coupling is determined by the ability of the...
AbstractThe elementary events of excitation-contraction coupling in heart muscle are Ca2+ sparks, wh...
AbstractFor a single or a group of Markov channels gating reversibly, distributions of open and clos...
AbstractFast Ca2+ release kinetics were measured in cardiac sarcoplasmic reticulum vesicles actively...