The Institute of Theoretical and Applied Mechanics 13 records found  1 - 10next  jump to record: Search took 0.03 seconds. 
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Intracellular Ca2+ load and Ca2+ transient are considerably dependent on distribution of sarcolemmal Ca2+ pump and Na+-Ca2+ exchanger between the t-tubular and surface me [...]
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The inwardly rectifying potassium current IK1 is one of the principle ionic currents responsible for repolarization phase of mammalian action potentials (APs). To estimat [...]
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We present a design of a model of rat ventricular cardiomyocyte with transverse-axial tubular system and the results of the first simulations of tubular ionic concentrati [...]
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The paper presents biophysical characteristics of transient outward potassium current (IKto) obtained from experiments on isolated rat ventricular cardiomyocytes. Based o [...]
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A novel quantitative model of a guin ea-pig ventricular myocyte has been designed with transverse-axial tubular system (TATS) included. This model displays long-term stab [...]
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In this paper, a new description of intracellular Ca2+ dynamics in the model of rat ventricular cardiomyocyte is presented. The principal modifications based on the recen [...]
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The transverse (T-) tubules of cardiac ventricular myocytes create a complex network of membrane invaginations. Many of the key proteins involved in excitation-contractio [...]
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In this work, we present a new version of cardiac ventricular cell model incorporating the transverse - axial tubular system. The improvements include reformulated descri [...]
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Abstrakt: The transverse-axial tubular system (TAT-system) of cardiac muscle is a structure that allows rapid propagation of excitation into the cell interior. As suggest [...]

The Institute of Theoretical and Applied Mechanics : 13 records found   1 - 10next  jump to record:
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13 Pásek, M.
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