体位、控制呼吸和运动对健康受试者心率变异性参数的影响。

S Carrasco Sosa, R González Camarena, R Román Ramos, V Medina Bañuelos, J Azpiroz Leehan
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引用次数: 0

摘要

在5种不同的动作中测定心率变异性的时间和频谱参数的行为,以表征交感迷走神经活动的水平。比较了两种光谱参数估计方案的判别能力,并对呼吸影响进行了评价。从时间和光谱的角度分析了110条瞬时心率和呼吸振幅的记录。记录来自22名健康受试者,按照五阶段方案:仰卧、控制呼吸、站立、运动和恢复。结果表明,各机动之间具有明显的区别和特征,特别是在分散参数、低偏分量和中间偏分量方面。用于估计光谱成分的两种积分归一化程序显示出相似性,产生独立于所选程序的功能解释。将低频分量划分为两个独立的频段,提高了识别能力。呼吸在控制呼吸动作中起重要作用,而在其余阶段中作用较低。总之,这些动作决定了心率变异性的色散和频谱参数(低和中间部分成分)的典型行为,表明每种动作在交感神经迷走神经活动中都有足够的不同水平。
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The effects of body position, controlled breathing and exercise on the heart rate variability parameters in healthy subjects.

The behavior of temporal and spectral parameters of the heart rate variability was determined during 5 different maneuvers in order to characterize the level of sympathetic-vagal activity. The discriminating capacity of two spectral parameter estimation schemes were compared, and the respiratory influence was evaluated. One hundred and ten records of instantaneous heart rate and respiratory amplitude were analyzed, both in temporal and spectral perspectives. The records were obtained from 22 healthy subjects, under a five-stage protocol: supine, controlled breathing, standing, exercise, and recovery. A discriminating and characteristic behavior was found among the maneuvers, specifically for the dispersion parameters, low and intermediate partial components. The two integration-normalization procedures used in the estimation of the spectral components showed similarities, producing a functional interpretation independent of the selected procedure. The division of the low frequency component in two separate bands, allowed an improved discriminating capacity. The respiration had an important influence in the controlled breathing maneuver while being lower in the rest of the stages. In conclusion, the maneuvers determined a typical behavior of the dispersion and spectral parameters (low and intermediate partial components) of the heart rate variability, showing adequate distinctive levels in the sympathetic-vagal activity for each maneuver.

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