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Causal coherence analysis of heart rate variability and systolic blood pressure variability under mental arithmetic task load.

机译:心理算术任务负荷下心率变异性和收缩压变异性的因果相干分析。

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Causal coherence analysis based on a closed-loop bivariate autoregressive model was applied to heart rate variability and systolic blood pressure (SBP) variability during mental arithmetic tasks to clarify how mental task load affects the linear closed loop interaction between cardiac and vascular systems. Thirteen normal male subjects performed a mental arithmetic task, button press task, and rest task while measuring their RR interval (RRI) and SBP. The mean value in the low frequency (LF) band (0.04-0.15Hz) of the squared causal coherence function from SBP to RRI during the mental arithmetic task was significantly higher than during the other two control tasks. Conversely, the LF band of the squared causal coherence function from RRI to SBP during the mental arithmetic task tended to be lower than during the rest task. These results suggest that mental arithmetic tasks enhance linear causal coupling from the vascular to cardiac system, and conversely weaken that from the cardiac to vascular system.
机译:将基于闭环双变量自回归模型的因果相干分析应用于心算任务中的心率变异性和收缩压(SBP)变异性,以阐明精神任务负荷如何影响心脏与血管系统之间的线性闭环相互作用。 13名正常男性受试者在测量其RR间隔(RRI)和SBP时执行了心理算术任务,按钮按下任务和休息任务。在心算操作中,从SBP到RRI的因果相干函数平方(低频)(0.04-0.15Hz)的平均值显着高于其他两个控制任务。相反,在心理算术任务期间,从RRI到SBP的因果相干函数平方的LF波段往往比其余任务更低。这些结果表明,心理算术任务会增强从血管到心脏系统的线性因果关系,相反会削弱从心脏到血管系统的因果关系。

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