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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Mechano-sensitivity of cardiac pacemaker function: Pathophysiological relevance, experimental implications, and conceptual integration with other mechanisms of rhythmicity
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Mechano-sensitivity of cardiac pacemaker function: Pathophysiological relevance, experimental implications, and conceptual integration with other mechanisms of rhythmicity

机译:心脏起搏器功能的机械敏感性:病理生理相关性,实验意义以及与其他节律性机制的概念整合

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摘要

Cardiac pacemaker cells exhibit spontaneous, rhythmic electrical excitation, termed automaticity. This automatic initiation of action potentials requires spontaneous diastolic depolarisation, whose rate determines normal rhythm generation in the heart. Pacemaker mechanisms have been split recently into: (i) cyclic changes in trans-sarcolemmal ion flows (termed the ‘membrane-clock’), and (ii) rhythmic intracellular calcium cycling (the ‘calcium-clock’). These two ‘clocks’ undoubtedly interact, as trans-sarcolemmal currents involved in pacemaking include calcium-carrying mechanisms, while intracellular calcium cycling requires trans-sarcolemmal ion flux as the mechanism by which it affects membrane potential. The split into separate ‘clocks’ is, therefore, somewhat arbitrary. Nonetheless, the ‘clock’ metaphor has been conceptually stimulating, in particular since there is evidence to support the view that either ‘clock’ could be sufficient in principle to set the rate of pacemaker activation.
机译:心脏起搏器细胞表现出自发的,有节奏的电刺激,称为自动性。动作电位的这种自动启动需要自发的舒张期去极化,其速率决定了心脏中正常的节律产生。起搏器机制最近被划分为:(i)跨肌膜离子流的周期性变化(称为“膜钟”),以及(ii)有节奏的细胞内钙循环(“钙钟”)。毫无疑问,这两个“时钟”是相互作用的,因为参与起搏的反肌膜电流包括携带钙的机制,而细胞内钙循环需要反肌膜离子通量作为影响膜电位的机制。因此,划分为单独的“时钟”有点随意。尽管如此,“时钟”的隐喻在概念上一直很刺激,特别是因为有证据支持这样的观点,即任何一个“时钟”在原则上都足以设定起搏器的启动速度。

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