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首页> 外文期刊>American Journal of Physiology >Ventricular contractility in atrial fibrillation is predictable by mechanical restitution and potentiation.
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Ventricular contractility in atrial fibrillation is predictable by mechanical restitution and potentiation.

机译:心房颤动的心室收缩性可通过机械恢复和增强来预测。

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We recently found that contractility (Emax) of an individual irregularly arrhythmic beat in electrically induced atrial fibrillation (AF) is reasonably predictable from the ratio of the preceding beat interval (RR1) to the beat interval immediately preceding RR1 (RR2) in the canine left ventricle. Moreover, the monotonically increasing relation between Emax and the RR1-to-RR2 ratio (RR1/RR2) passed through or by the mean arrhythmic beat Emax as well as the regular beat Emax at RR1/RR2 = 1. We hypothesized that this Emax-RR1/RR2 relation during irregular arrhythmia could be attributed to the basic characteristics of the mechanical restitution and potentiation. To test this, we adopted a known comprehensive equation describing the force restitution and potentiation as a function of two preceding beat intervals and simulated contractilities of irregular arrhythmic beats with randomized beat intervals on a computer. The simulated Emax-RR1/RR2 relation reasonably resembled the one that we recently observed experimentally, supporting our hypothesis. We therefore conclude that the primary mechanism underlying the varying contractilities of irregular beats in AF is mechanical restitution and potentiation.
机译:我们最近发现,从左心房之前的心跳间隔(RR1)与紧接的RR1(RR2)之前的心跳间隔之比,可以合理地预测电诱发心房颤动(AF)中单个不规则心律失常心律的收缩力(Emax)心室。此外,Emax与通过或通过平均心律失常搏动Emax以及RR1 / RR2 = 1的常规搏动Emax传递的RR1-RR2比率(RR1 / RR2)之间的单调递增关系。我们假设此Emax-不规则心律失常期间的RR1 / RR2关系可能归因于机械恢复和增强的基本特征。为了对此进行测试,我们采用了一个已知的综合方程,该函数将力恢复和增强描述为两个先前搏动间隔的函数,并在计算机上用随机搏动间隔模拟了不规则心律失常搏动的收缩力。模拟的Emax-RR1 / RR2关系在合理程度上类似于我们最近通过实验观察到的关系,从而支持了我们的假设。因此,我们得出结论,AF中不规则搏动的不同收缩力背后的主要机制是机械恢复和增强作用。

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