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Modelling of intracellular Ca2+ alternans and Ca2+-voltage coupling in cardiac myocytes

机译:心肌细胞中细胞内Ca 2 + 交替糖和Ca 2 + -电压耦合的建模

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In cardiac myocytes, both action potential duration (APD) and mechanical contraction alternans are associated with intracellular Ca2+ alternans. The aim of this study is to investigate the interaction between Ca2+ and APD alternans by using computer simulations. With a spatially extended (75 elements) model of a single canine ventricular cell, Ca2+ and APD alternans were produced either by rapid pacing (3.57 Hz), or by slow pacing (2.5 Hz) with an increased steepness of the relationship between SR Ca2+ content and cytoplasimc Ca2+ concentration. It is shown that spatially discordant Ca2+ alternans is generated when the Ca2+-dependent L-type Ca2+ channel inactivation is strong. It tends to be concordant for weak Ca2+-dependent L-type Ca2+ channel inactivation.
机译:在心肌细胞中,动作电位持续时间(APD)和机械收缩交替蛋白都与细胞内Ca 2 + 交替蛋白有关。本研究的目的是通过计算机模拟研究Ca 2 + 与APD交替蛋白之间的相互作用。在单个犬心室细胞的空间扩展模型(75个元素)中,通过快速起搏(3.57 Hz)或通过缓慢起搏(2.5 Hz)产生Ca 2 + 和APD交替蛋白SR Ca 2 + 含量与细胞质Ca 2 + 浓度之间关系的陡度增加。结果表明,当依赖Ca 2 + 的L型Ca 2 + 通道失活很强时,会产生空间不一致的Ca 2 + 交变体。 。 Ca 2 + 依赖的弱L型Ca 2 + 通道失活趋于一致。

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