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One or more keywords matched the following items that are connected to Fill, Michael
Item TypeName
Concept Myocardium
Academic Article Ryanodine receptor current amplitude controls Ca2+ sparks in cardiac muscle.
Academic Article Pernicious attrition and inter-RyR2 CICR current control in cardiac muscle.
Academic Article Unitary Ca2+ current through mammalian cardiac and amphibian skeletal muscle ryanodine receptor Channels under near-physiological ionic conditions.
Academic Article Ryanodine receptor function in newborn rat heart.
Academic Article Calcium regulation of single cardiac ryanodine receptor channels.
Academic Article Ryanodine receptor luminal Ca2+ regulation: swapping calsequestrin and channel isoforms.
Academic Article Potential role of cardiac calsequestrin in the lethal arrhythmic effects of cocaine.
Academic Article Cytosolic Ca?? buffering determines the intra-SR Ca?? concentration at which cardiac Ca?? sparks terminate.
Academic Article Non-?-blocking R-carvedilol enantiomer suppresses Ca2+ waves and stress-induced ventricular tachyarrhythmia without lowering heart rate or blood pressure.
Academic Article Sarcoplasmic reticulum Ca2+, Mg2+, K+, and Cl- concentrations adjust quickly as heart rate changes.
Academic Article Differential activation by Ca2+, ATP and caffeine of cardiac and skeletal muscle ryanodine receptors after block by Mg2+.
Academic Article Spatial Ca(2+) distribution in contracting skeletal and cardiac muscle cells.
Academic Article Unitary Ca2+ current through cardiac ryanodine receptor channels under quasi-physiological ionic conditions.
Academic Article Coordinated feet and the dance of ryanodine receptors.
Academic Article Adaptation of single cardiac ryanodine receptor channels.
Academic Article Rectification of rabbit cardiac ryanodine receptor current by endogenous polyamines.
Academic Article Streaming potentials reveal a short ryanodine-sensitive selectivity filter in cardiac Ca2+ release channel.
Academic Article Activation of single cardiac and skeletal ryanodine receptor channels by flash photolysis of caged Ca2+.
Academic Article Surface charge potentiates conduction through the cardiac ryanodine receptor channel.
Academic Article Cytoplasmic Ca2+ does not inhibit the cardiac muscle sarcoplasmic reticulum ryanodine receptor Ca2+ channel, although Ca(2+)-induced Ca2+ inactivation of Ca2+ release is observed in native vesicles.
Academic Article Ryanodine receptor adaptation: control mechanism of Ca(2+)-induced Ca2+ release in heart.
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  • Myocardium