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Cardiac dynamics: Alternans and arrhythmogenesis

机译:心脏动力学:交替蛋白和心律失常

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摘要

Pre-existing heterogeneities present in cardiac tissue are essential for maintaining the normal electrical and mechanical functions of the heart. Exacerbation of such heterogeneities or the emergence of dynamic factors can produce repolarization alternans, which are beat-to-beat alternations in the action potential time course. Traditionally, this was explained by restitution, but additional factors, such as cardiac memory, calcium handling dynamics, refractory period restitution, and mechano-electric feedback, are increasingly recognized as the underlying causes. The aim of this article is to review the mechanisms that generate cardiac repolarization alternans and convert spatially concordant alternans to the more arrhythmogenic spatially discordant alternans. This is followed by a discussion on how alternans generate arrhythmias in a number of clinical scenarios, and concluded by an outline of future therapeutic targets for anti-arrhythmic therapy.
机译:心脏组织中预先存在的异质性对于维持心脏的正常电子和机械功能至关重要。此类异质性的加剧或动态因素的出现会产生复极化交替,这是动作电位时程中的逐次交替。传统上,这是通过恢复来解释的,但是其他因素,例如心脏记忆,钙处理动力学,不应期恢复和机电反馈,也逐渐被认为是根本原因。本文的目的是回顾产生心脏复极交替发生并将空间一致的交替发生转化为更致心律失常的空间不一致的交替发生的机制。接下来是关于在许多临床情况下交替素如何产生心律不齐的讨论,并以抗心律不齐疗法的未来治疗目标概述为总结。

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