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合谷穴处微循环激光多普勒信号的频谱分析。

Spectral analysis of the microcirculatory laser Doppler signal at the Hoku acupuncture point.

作者信息

Hsiu Hsin, Hsu Wei-Chen, Huang Shih-Ming, Hsu Chia-Liang, Lin Wang Yuh-Ying

机构信息

Department of Electrical Engineering, Yuan Ze University, 135 Yuan-Tung Road, Taoyuan, Taiwan, Republic of China.

出版信息

Lasers Med Sci. 2009 May;24(3):353-8. doi: 10.1007/s10103-008-0569-8. Epub 2008 May 27.

Abstract

We aimed to characterize the frequency spectra of skin blood flow signals recorded at Hoku, an important acupuncture point (acupoint) in oriental medicine. Electrocardiogram (ECG) and laser Doppler flowmetry signals were measured simultaneously in 31 trials on seven volunteers aged 21-27 years. A four-level Haar wavelet transform was applied to the measured 20 min laser Doppler flowmetry (LDF) signals, and periodic oscillations with five characteristic frequency peaks were obtained within the following frequency bands: 0.0095-0.021 Hz, 0.021-0.052 Hz, 0.052-0.145 Hz, 0.145-0.6 Hz, and 0.6-1.6 Hz (defined as FR1-FR5), respectively. The relative energy contribution in FR3 was significantly larger at Hoku than at the two non-acupoints. Linear regression analysis revealed that the relative energy contribution in FR3 at Hoku significantly increased with the pulse pressure (R(2) = 0.48; P < 0.01 by F-test). Spectral analysis of the flux signal revealed that one of the major microcirculatory differences between acupoints and non-acupoints was in the different myogenic responses of their vascular beds. This information may aid the development of a method for the non-invasive study of the microcirculatory characteristics of the acupoint.

摘要

我们旨在描绘在东方医学中一个重要穴位——合谷穴记录的皮肤血流信号的频谱。对7名年龄在21 - 27岁的志愿者进行了31次试验,同时测量心电图(ECG)和激光多普勒血流仪信号。对测量得到的20分钟激光多普勒血流仪(LDF)信号应用四级哈尔小波变换,在以下频段内获得了具有五个特征频率峰值的周期性振荡:分别为0.0095 - 0.021赫兹、0.021 - 0.052赫兹、0.052 - 0.145赫兹、0.145 - 0.6赫兹和0.6 - 1.6赫兹(定义为FR1 - FR5)。合谷穴处FR3中的相对能量贡献显著大于两个非穴位处。线性回归分析表明,合谷穴处FR3中的相对能量贡献随脉压显著增加(R(2) = 0.48;F检验,P < 0.01)。通量信号的频谱分析表明,穴位和非穴位之间主要的微循环差异之一在于其血管床不同的肌源性反应。这些信息可能有助于开发一种用于穴位微循环特征非侵入性研究的方法。

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