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Inferring the cellular origin of voltage and calcium alternans from the spatial scales of phase reversal during discordant alternans.

机译:从不一致的交替素期间的相变空间尺度推断电压和钙交替素的细胞起源。

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Beat-to-beat alternation of the action potential duration (APD) in paced cardiac cells has been linked to the onset of lethal arrhythmias. Both experimental and theoretical studies have shown that alternans at the single cell level can be caused by unstable membrane voltage (V(m)) dynamics linked to steep APD-restitution, or unstable intracellular calcium (Ca) cycling linked to high sensitivity of Ca release from the sarcoplasmic reticulum on sarcoplasmic reticulum Ca load. Identifying which of these two mechanisms is the primary cause of cellular alternans, however, has remained difficult since Ca and V(m) are bidirectionally coupled. Here, we use numerical simulations of a physiologically detailed ionic model to show that the origin of alternans can be inferred by measuring the length scales over which APD and Ca(i) alternans reverse phase during spatially discordant alternans. The main conclusion is that these scales are comparable to a few millimeters and equal when alternans is driven by APD restitution, but differ markedly when alternans is driven predominantly by unstable Ca cycling. In the latter case, APD alternans still reverses phase on a millimeter tissue scale due to electrotonic coupling, while Ca alternans reverses phase on a submillimeter cellular scale. These results show that experimentally accessible measurements of Ca(i) and V(m) in cardiac tissue can be used to shed light on the cellular origin of alternans.
机译:节律性心脏细胞中动作电位持续时间(APD)的逐节拍交替与致命性心律失常的发作有关。实验和理论研究均表明,单细胞水平的交替素可能是由与陡峭的APD还原有关的不稳定的膜电压(V(m))动态引起的,或由与Ca释放的​​高敏感性有关的不稳定的细胞内钙(Ca)循环引起的从肌质网对肌浆网的钙负荷。然而,由于Ca和V(m)是双向偶联的,因此识别这两种机制中的哪一种是细胞交替素的主要原因。在这里,我们使用生理学上详细的离子模型的数值模拟来显示,可通过测量空间不一致的交替子期间APD和Ca(i)交替子反相的长度尺度来推断交替子的起源。主要结论是,这些鳞片可比到几毫米,并且在APD复原驱动交替素时相等,但在主要由不稳定的Ca循环驱动交替素时明显不同。在后一种情况下,由于电渗耦合,APD交替蛋白仍在毫米级组织水平上反相,而Ca交替蛋白在亚毫米细胞级上反相。这些结果表明,心脏组织中Ca(i)和V(m)的实验可访问测量值可用于阐明交替RNA的细胞起源。

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