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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Response of autonomic nervous system to body positions: Fourier and wavelet analysis
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Response of autonomic nervous system to body positions: Fourier and wavelet analysis

机译:自主神经系统对身体位置的反应:傅立叶和小波分析

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Two mathematical methods, the Fourier and wavelet transforms, were used to study the short term cardiovascular control system. Time series, picked from electrocardiogram and arterial blood pressure lasting 6 minutes, were analyzed in supine position (SUP), during the first (HD1) and the second parts (HD2) of 90 degrees head down tilt, and during recovery (REC). The wavelet transform was performed using the Haar function of period T = 2(j) (j = 1, 2,..., 6) to obtain wavelet coefficients. Power spectra components were analyzed within three bands, VLF (0.003-0.04), LF (0.04-0.15) and HF (0.15-0.4) with the frequency unit cycle/interval. Wavelet transform demonstrated a higher discrimination among all analyzed periods than the Fourier transform. For the Fourier analysis, the LF of R-R intervals and VLF of systolic blood pressure show more evident difference for different body positions. For the wavelet analysis, the systolic blood pressures show much more evident differences than the R-R intervals. This study suggests a difference in the response of the vessels and the heart to different body positions. The partial dissociation between VLF and LF results is a physiologically relevant finding of this work.
机译:傅立叶变换和小波变换这两种数学方法被用于研究短期心血管控制系统。从心电图和持续6分钟的动脉血压中选择的时间序列在仰卧位(SUP),头向下倾斜90度的第一部分(HD1)和第二部分(HD2)以及恢复期间(REC)进行分析。使用周期T = 2(j)(j = 1,2,...,6)的Haar函数执行小波变换,以获得小波系数。以频率单位周期/间隔在三个频带VLF(0.003-0.04),LF(0.04-0.15)和HF(0.15-0.4)中分析了功率谱分量。与傅立叶变换相比,小波变换在所有分析周期中表现出更高的区分度。对于傅立叶分析,R-R间隔的LF和收缩压的VLF对于不同的身体位置显示出更明显的差异。对于小波分析,收缩压显示出比R-R间隔明显得多的差异。这项研究表明血管和心脏对不同身体位置的反应有所不同。 VLF和LF结果之间的部分分离是这项工作的生理相关发现。

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