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Application of the maximum-entropy method to data on short-term variability in inter-beat interval and an interpretation of the calculated powers

机译:最大熵方法在心跳间隔中短期变异性数据上的应用以及计算出的功效

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Sixteen young males underwent resting and mental arithmetic and were injected with 100 μg phenylephrine during the interventions. Half of them further underwent trinitroglycerine injections. Power spectral density for inter-beat interval variability was calculated using the maximum-entropy method (MEM) with a very high lag, and its validity was checked by nonlinear least-square method. It was found that the MEM could produce a very accurate power spectral density. Results on the low- and high-frequency (LF and HF) powers indicated that the phenylephrine injection increased both the LF and HF powers, that the trinitroglycerine injection increased the LF power to some degree, and that the mental arithmetic decreased both the LF and HF powers with both phenylephrine and trinitroglycerine. Therefore, the LF power could be interpreted as a marker of both the vagal and sympathetic activities, whereas the HF power seemed to be solely associated with vagal activity. The implications of the interpretation are discussed in terms of the controversy on the LF power (vagal plus sympathetic vs. sympathetic).
机译:十六名年轻男性进行了静息和心理测验,并在干预期间注射了100微克去氧肾上腺素。他们中的一半进一步接受了三硝基甘油注射。节拍间隔可变性的功率谱密度是使用极大滞后的最大熵方法(MEM)计算的,其有效性通过非线性最小二乘法检查。发现MEM可以产生非常精确的功率谱密度。低频和高频功率的结果表明,去氧肾上腺素注射液增加了LF和HF功率,三硝基甘油注射液增加了LF功率在一定程度上,并且心算降低了LF和HF HF与去氧肾上腺素和三硝基甘油同时起作用。因此,LF能量可被解释为迷走神经和交感神经活动的标志物,而HF能量似乎仅与迷走神经活动有关。该解释的含义是根据有关LF能量的争议(迷走神经加同情的与同情的)进行讨论的。

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