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Information dynamics in cardiorespiratory analyses: Application to controlled breathing

机译:心肺分析中的信息动力学:在控制呼吸中的应用

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Voluntary adjustment of the breathing pattern is widely used to deal with stress-related conditions. In this study, effects of slow and fast breathing with a low and high inspiratory to expiratory time on heart rate variability (HRV) are evaluated by means of information dynamics. Information transfer is quantified both as the traditional transfer entropy as well as the cross entropy, where the latter does not condition on the past of HRV, thereby taking the highly unidirectional relation between respiration and heart rate into account. The results show that the cross entropy is more suited to quantify cardiorespiratory information transfer as this measure increases during slow breathing, indicating the increased cardiorespiratory coupling and suggesting the shift towards vagal activation during slow breathing. Additionally we found that controlled breathing, either slow or fast, results as well in an increase in cardiorespiratory coupling, compared to spontaneous breathing, which demonstrates the beneficial effects of instructed breathing.
机译:自愿调整呼吸模式已广泛用于应对与压力有关的状况。在这项研究中,通过信息动态评估了呼吸时间短,呼吸快和慢的快慢呼吸对心率变异性(HRV)的影响。信息传递既可以量化为传统的传递熵,也可以量化为交叉熵,而交叉熵并不取决于HRV的过去,因此考虑了呼吸和心率之间的高度单向关系。结果表明,交叉熵更适合量化心肺信息传递,因为该措施在慢呼吸期间会增加,表明心肺耦合增加,并表明在慢呼吸过程中会向迷走神经激活转移。另外,我们发现与自发呼吸相比,控制呼吸(无论是慢呼吸还是快呼吸)也会导致心肺耦合的增加,这证明了指令呼吸的有益效果。

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