Junctional resistance and action potential delay between embryonic heart cell aggregates

scientific article

Junctional resistance and action potential delay between embryonic heart cell aggregates is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1085/JGP.75.6.633
P932PMC publication ID2215265
P698PubMed publication ID7391810
P5875ResearchGate publication ID277368669

P2093author name stringClapham DE
Shrier A
DeHaan RL
P2860cites workGap junction formation between reaggregated Novikoff hepatoma cellsQ24564129
Permeability of membrane junctionsQ34229781
Current noise parameters derived from voltage noise and impedance in embryonic heart cell aggregatesQ34254610
Quantitative analysis of low-resistance junctions between cultured cells and correlation with gap-junctional areasQ36198949
PROPAGATION OF ACTION POTENTIALS AND THE STRUCTURE OF THE NEXUS IN CARDIAC MUSCLEQ36405239
In vitro differentiation of a fast Na+ conductance in embryonic heart cell aggregatesQ37588478
Calcium in (junctional) intercellular communication and a thought on its behavior in intracellular communicationQ39776038
Chapter 5 Cell Coupling In Developing Systems: The Heart-Cell ParadigmQ39921232
Cardiac muscle: excitability and passive electrical propertiesQ40864600
Effect of hypoxia on the sinoatrial node, atrium, and atrioventricular node in the rabbit heartQ41024854
The actions of ouabain on intercellular coupling and conduction velocity in mammalian ventricular muscleQ41051530
Further development of a model for electrical transmission between myocardial cells not connected by low-resistance pathwaysQ41454062
Correlative electrophysiological and anatomical studies concerning the site of origin of escape rhythm during complete atrioventricular block in the dogQ41615356
Membrane response to current pulses in spheroidal aggregates of embryonic heart cellsQ42087420
Resistance and potential profiles in the cleft between two myocardial cells: electrical analog and computer simulationsQ44022750
Circus movement in rabbit atrial muscle as a mechanism of tachycardia. III. The "leading circle" concept: a new model of circus movement in cardiac tissue without the involvement of an anatomical obstacleQ44732729
Ultrastructure of the Human Atrioventricular NodeQ44790678
Permeable junctionsQ52861359
Studies on the formation of a permeable cell membrane junction. II. Evolving junctional conductance and junctional insulation.Q54001413
Contractures and increase in internal longitudianl resistance of cow ventricular muscle induced by hypoxiaQ54574471
The diffusion of radiopotassium across intercalated disks of mammalian cardiac muscle.Q54704648
Acquisition of synchronous beating between embryonic heart cell aggregates and layersQ66875649
Cardiac arrhythmiasQ66893548
Development of electrical coupling and action potential synchrony between paired aggregates of embryonic heart cellsQ66981527
Synchronization of pulsation rates in isolated cardiac myocytesQ67273674
Intercellular coupling in the atrioventricular node and other tissues of the rabbit heartQ67439928
Embryonic myocardial cell aggregates: volume and pulsation rateQ69503106
The potassium-sensitivity of isolated embryonic heart cells increases with developmentQ71584808
Synchronized beating of myocardial cells mediated by FL cells in monolayer culture and its inhibition by trypsin-treated FL cellsQ71771340
The frequency dependent character of the membrane capacity in cardiac Purkyně fibresQ71837591
Anatomical and ultrastructural study of the electrophysiological atrioventricular node of the rabbitQ72342412
The electrical constants of Purkinje fibresQ72990538
P433issue6
P304page(s)633-654
P577publication date1980-06-01
P1433published inThe Journal of General PhysiologyQ1092259
P1476titleJunctional resistance and action potential delay between embryonic heart cell aggregates
P478volume75

Reverse relations

cites work (P2860)
Q51413150Beat-to-beat repolarization variability in ventricular myocytes and its suppression by electrical coupling.
Q33622487Biomechanics of cardiac electromechanical coupling and mechanoelectric feedback
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Q52649500Effects of changes in excitability and intercellular coupling on synchronization in the rabbit sino-atrial node.
Q54541218Electrical coupling among heart cells in the absence of ultrastructurally defined gap junctions.
Q58616972Electrical coupling and its channels
Q36490548Endothelin-induced conversion of embryonic heart muscle cells into impulse-conducting Purkinje fibers
Q40762116Gap junctional communication in excitable tissues; the heart as a paradigma
Q36433316Improved electrical coupling in uterine smooth muscle is associated with increased numbers of gap junctions at parturition
Q40135853Modulation of Junctional Permeability in Cardiac Fibers
Q35834733Pacemaker synchronization of electrically coupled rabbit sinoatrial node cells
Q34825594Peptides acting at gap junctions
Q34258541Propagation through electrically coupled cells. How a small SA node drives a large atrium
Q52728970Small signal impedance of heart cell membranes.
Q52204999Specific motifs in the external loops of connexin proteins can determine gap junction formation between chick heart myocytes.
Q40103397The Contribution of Cellular Electrophysiology in the Development of Antiarrhythmic Agents
Q68531131The development of beat-rate synchronization of rat myocyte pairs in cell culture

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