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To What Extent Does Heart Rate Alter the Cerebral Hemodynamic Patterns During Atrial Fibrillation?

机译:心率在多大程度上改变了心房颤动期间的脑血力学模式?

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Atrial fibrillation (AF), the most common cardiac arrhythmia leading to irregular and faster heartbeat, has been recently and independently associated to the risk of dementia. A constellation of hemodynamic mechanisms has been proposed to explain the possible link between the two pathologies. However, definitive data still miss, and it is unknown how heart rate (HR) influences the cerebral microcirculation. We propose a computational approach, based on a validated hemodynamic modeling, to compare the cerebral circulation during normal sinus rhythm (NSR) and AF at different HRs. AF is able to trigger a higher variability of the cerebral blood flow variables which grows towards the distal circulation. The alteration of the hemodynamic patterns, inducing the rupture of the signal periodicity and the consequent higher occurrence of extremely high/low values, increases with HR. Awaiting necessary clinical evidences, present findings highlight that a strict rate control strategy could be beneficial in terms of cognitive outcomes in patients with permanent AF.
机译:心房颤动(AF),最近患上不规则和更快的心跳,最近且与痴呆症的风险有关的最常见的心律失常。已经提出了一种血流动力学机制的星座来解释两种病理学之间的可能链接。然而,确定数据仍然错过,并且未知心率(HR)如何影响脑微循环。我们基于经过验证的血液动力学建模提出了一种计算方法,以比较在不同HRS的正常鼻窦节奏(NSR)和AF期间的脑循环。 AF能够触发脑血流变量的更高变化,这些变量向远端循环增长。血流动力学模式的改变,诱导信号周期性的破裂和随后的较高次数的极高/低值,随着人力资源而增加。等待必要的临床证据,现在的调查结果强调,严格的速率控制策略可能在永久性AF的患者的认知结果方面有益。

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