心率变异性的功率谱分析用于评估小型猪自主神经活动的日变化。

Laboratory animal science Pub Date : 1999-04-01
M Kuwahara, A Suzuki, H Tsutsumi, M Tanigawa, H Tsubone, S Sugano
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摘要

背景和目的:本研究的目的是通过心率(HR)变异性的功率谱分析来记录自主神经功能的日变化。方法:为明确心率变异性的功率谱分析特征,同时记录心电图(ECG)、血压(BP)和呼吸(Resp)波形。结果:两个主要的光谱成分在低(LF)和高(HF)频带被检查HR变异性。HR和Resp变异和HR和BP变异之间的一致性分别在约0.14和0.03 Hz时达到最大。在这些数据的基础上,定义了两个感兴趣的频段——低频(0.01至0.07 Hz)和高频(0.07至1.0 Hz)。自主神经阻滞研究表明,副交感神经系统介导HF和LF成分,而交感神经系统仅介导LF成分;HR有一个昼夜模式。暗相的低频和高频波段趋于高于光相。lf / hf比值的日变化规律与HR相似。结论:小型猪的副交感神经活动可能主要发生在黑暗期。自主神经功能的功率谱和日变化特征与人类基本相同。因此,小型猪可能是未来生物行为学和药物毒理学研究的有用动物模型。
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Power spectral analysis of heart rate variability for assessment of diurnal variation of autonomic nervous activity in miniature swine.

Background and purposes: The purpose of the study was to document diurnal variation of autonomic nervous functions by use of power spectral analysis of heart rate (HR) variability.

Methods: To clarify characteristics of power spectral analysis of HR variability, electrocardiogram (ECG), blood pressure (BP), and respiratory (Resp) waveform simultaneously were recorded.

Results: Two major spectral components were examined at low (LF)- and high (HF)-frequency bands for HR variability. Coherence between HR and Resp variabilities and HR and BP variabilities was maximal at approximately 0.14 and 0.03 Hz, respectively. On the basis of these data, two frequency bands of interest--LF (0.01 to 0.07 Hz) and HF (0.07 to 1.0 Hz)--were defined. Autonomic blockade studies indicated that the parasympathetic system mediated the HF and LF components, whereas the sympathetic system mediated only the LF component; HR had a diurnal pattern. The LF and HF bands in the dark phase tended to be higher than those in the light phase. The LF-to-HF ratio had a diurnal pattern similar to that of the HR.

Conclusion: Parasympathetic nervous activity in miniature swine may be predominant in the dark phase. The characteristics of power spectra and diurnal variations of autonomic nervous functions are almost the same as those of humans. Therefore, miniature swine may be a useful animal model for future biobehavioral and pharmacotoxicologic studies.

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