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Cardiac function and modulation of sarcomeric function by length.

机译:心脏功能和肌节功能的长度调节。

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The Frank-Starling relationship provides beat-to-beat regulation of ventricular function by matching ventricular input and output. This review addresses the subcellular mechanisms by which the ventricle adjusts its output (i.e. stroke volume) by changes in end-diastolic volume. The subcellular processes are placed in the context of the four phases of the cardiac cycle with emphasis on the sarcomeric properties that mediate the number of force-generating cross-bridges recruited during pressure development. Additional mechanistic insight is provided regarding the factors that regulate myocyte loaded shortening speeds, which are paramount for dictating ejection volume. Emphasis is placed on the interplay between cross-bridge-induced cooperative activation of the thin filament and cooperative deactivation of the thin filament induced by muscle shortening. The balance of these two properties seems to determine systolic haemodynamics, and how this balance is modulated by sarcomere length, in part, underlies the Frank-Starling relationship.
机译:Frank-Starling关系通过匹配心室输入和输出来实现心室功能的逐跳调节。这篇综述探讨了亚细胞机制,通过这种机制,心室通过舒张末期容积的变化来调节其输出(即中风量)。将亚细胞过程置于心动周期的四个阶段的背景下,重点是肌​​节特性,其介导在压力发展过程中募集的产生力的跨桥的数量。还提供了有关调节肌细胞加载的缩短速度的因素的其他机制的见解,这些因素对于决定射血量至关重要。重点放在跨桥引起的细丝协同激活与肌肉缩短引起的细丝协同失活之间的相互作用。这两个属性的平衡似乎决定了收缩期的血流动力学,以及这种平衡如何由肌小节长度调节的部分原因是Frank-Starling关系的基础。

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