The role of mammalian cardiac t-tubules in excitation-contraction coupling: experimental and computational approaches

scientific article published on 18 March 2009

The role of mammalian cardiac t-tubules in excitation-contraction coupling: experimental and computational approaches is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

External links are
P356DOI10.1113/EXPPHYSIOL.2008.043984
P698PubMed publication ID19297389
P5875ResearchGate publication ID24211335

P2093author name stringClive H Orchard
Fabien Brette
Michal Pásek
P2860cites workCardiac excitation-contraction couplingQ28216347
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Confocal near-membrane detection of calcium in cardiac myocytes.Q32049315
Ca(2+) release mechanisms, Ca(2+) sparks, and local control of excitation-contraction coupling in normal heart muscleQ33758348
Subcellular [Ca2+]i gradients during excitation-contraction coupling in newborn rabbit ventricular myocytes.Q33873121
Surface:volume relationship in cardiac myocytes studied with confocal microscopy and membrane capacitance measurements: species-dependence and developmental effects.Q34017452
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Shape, size, and distribution of Ca(2+) release units and couplons in skeletal and cardiac musclesQ34171328
Na/Ca exchange and Na/K-ATPase function are equally concentrated in transverse tubules of rat ventricular myocytesQ34183706
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Functional coupling of Ca2+ channels and ryanodine receptors in cardiac myocytesQ34809771
Local calcium gradients during excitation-contraction coupling and alternans in atrial myocytesQ35037539
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Stability and instability of regulation of intracellular calcium.Q35968150
Ca2+ currents in cardiac myocytes: Old story, new insights.Q36407140
Simulated calcium current can both cause calcium loading in and trigger calcium release from the sarcoplasmic reticulum of a skinned canine cardiac Purkinje cellQ36409341
Altered cardiac myocyte Ca regulation in heart failure.Q36659965
Propagation of excitation-contraction coupling into ventricular myocytesQ36711760
Novel features of the rabbit transverse tubular system revealed by quantitative analysis of three-dimensional reconstructions from confocal imagesQ36791289
Resurgence of cardiac t-tubule researchQ36844418
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Quantification of t-tubule area and protein distribution in rat cardiac ventricular myocytesQ36946191
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t-Tubules and sarcoplasmic reticulum function in cardiac ventricular myocytesQ37002287
Ca2+ influx through T- and L-type Ca2+ channels have different effects on myocyte contractility and induce unique cardiac phenotypesQ37182590
Comparison of subsarcolemmal and bulk calcium concentration during spontaneous calcium release in rat ventricular myocytes.Q39419066
Examination of the transverse tubular system in living cardiac rat myocytes by 2-photon microscopy and digital image-processing techniquesQ39487485
Distribution, surface density, and membrane area of diadic junctional contacts between plasma membrane and terminal cisterns in mammalian ventricleQ41046915
Quantification of calcium entry at the T-tubules and surface membrane in rat ventricular myocytesQ41809070
Na(+)-Ca(2+) exchange current and submembrane [Ca(2+)] during the cardiac action potentialQ42162128
Potassium accumulation and depletion in frog atrial muscleQ43435347
K(+) current distribution in rat sub-epicardial ventricular myocytesQ44075788
Na+-Ca2+ exchange activity is localized in the T-tubules of rat ventricular myocytesQ44112807
Validation of formamide as a detubulation agent in isolated rat cardiac cellsQ44138470
Modulation of Ca2+ signalling in rat atrial myocytes: possible role of the alpha1C carboxyl terminalQ44619541
beta-adrenergic stimulation restores the Ca transient of ventricular myocytes lacking t-tubulesQ44761699
Reduced synchrony of Ca2+ release with loss of T-tubules-a comparison to Ca2+ release in human failing cardiomyocytesQ44801104
Heart failure after myocardial infarction: altered excitation-contraction coupling.Q44922189
Differential modulation of L-type Ca2+ current by SR Ca2+ release at the T-tubules and surface membrane of rat ventricular myocytesQ44932505
Low efficiency of Ca2+ entry through the Na(+)-Ca2+ exchanger as trigger for Ca2+ release from the sarcoplasmic reticulum. A comparison between L-type Ca2+ current and reverse-mode Na(+)-Ca2+ exchangeQ46368147
Inhibition and rapid recovery of Ca2+ current during Ca2+ release from sarcoplasmic reticulum in guinea pig ventricular myocytesQ46621510
Spatiotemporal characteristics of SR Ca(2+) uptake and release in detubulated rat ventricular myocytesQ46730851
Remodeling of T-tubules and reduced synchrony of Ca2+ release in myocytes from chronically ischemic myocardiumQ46850862
T-type Ca2+ current as a trigger for Ca2+ release from the sarcoplasmic reticulum in guinea-pig ventricular myocytesQ46907921
No apparent requirement for neuronal sodium channels in excitation-contraction coupling in rat ventricular myocytesQ48721215
The functional role of cardiac T-tubules explored in a model of rat ventricular myocytesQ50113024
Mechanisms underlying adaptation of action potential duration by pacing rate in rat myocytes.Q51905865
Slow diffusion of K+ in the T tubules of rat cardiomyocytes.Q51940249
The control of Ca release from the cardiac sarcoplasmic reticulum: regulation versus autoregulation.Q53945781
P433issue5
P304page(s)509-519
P577publication date2009-03-18
P1433published inExperimental PhysiologyQ1091760
P1476titleThe role of mammalian cardiac t-tubules in excitation-contraction coupling: experimental and computational approaches
P478volume94

Reverse relations

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