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不同皮肤区域中呼吸依赖性激光多普勒通量运动及其对皮肤血管自主神经控制的意义。

Respiratory-dependent laser-Doppler flux motion in different skin areas and its meaning to autonomic nervous control of the vessels of the skin.

作者信息

Mück-Weymann M E, Albrecht H P, Hager D, Hiller D, Hornstein O P, Bauer R D

机构信息

Department of Dermatology, University of Erlangen-Nünberg, Germany.

出版信息

Microvasc Res. 1996 Jul;52(1):69-78. doi: 10.1006/mvre.1996.0044.

Abstract

The aim of this study is to evaluate and quantify the respiratory dependency of cutaneous laser-Doppler flux motion in two variable innervated sites of the upper extremity (the proximal volar forearm and the fingertip) by using a computer-supported system. Various spontaneous (6-17/ min) and externally triggered (12 or 6/min) respiratory frequencies were used for comparative frequency analysis of the laser-Doppler flux signal. Further, an index (MIRSF) was determined as an indicator of the correlation between flux motion and respiration. The MIRSF is defined as the ratio of the power spectrum of the LDF signal at the specific respiratory frequency divided by the time-averaged LDF for that time period. The MIRSF enables a comparison of different intra- and interindividual flux values. A very high correlation was seen between the respiratory frequency and the MIRSF during spontaneous respiration in the skin of the proximal volar forearm; the lower the spontaneous respiratory frequency, the higher the MIRSF. However, this correlation could not be found in the results of the fingertip. The presence of a constant and therefore externally triggered respiratory frequency increased the modulations of the LDF at both measurement locations. While triggered respiration produced a decline in the taLDF of the fingertip, the taLDF of the forearm was unaffected. Considering the different innervation and hydrostatic effects the results lead to the following conclusion: the finger vessels are richly innervated with adrenoceptors which causes alpha 1-mediated vasoconstriction. In contrast to the vessels of the fingers those of the forearm seem to be under andrenergic as well as cholinergic control. Hydrostatic components appear to be more prevalent in the volar forearm site.

摘要

本研究的目的是使用计算机支持系统,评估和量化上肢两个不同神经支配部位(掌侧前臂近端和指尖)皮肤激光多普勒血流运动的呼吸依赖性。使用各种自发呼吸频率(6 - 17次/分钟)和外部触发呼吸频率(12次或6次/分钟)对激光多普勒血流信号进行比较频率分析。此外,确定了一个指数(MIRSF)作为血流运动与呼吸之间相关性的指标。MIRSF定义为特定呼吸频率下LDF信号的功率谱与该时间段内时间平均LDF的比值。MIRSF能够比较不同个体内和个体间的血流值。在掌侧前臂近端皮肤的自发呼吸过程中,呼吸频率与MIRSF之间存在非常高的相关性;自发呼吸频率越低,MIRSF越高。然而,在指尖的结果中未发现这种相关性。恒定的、因此是外部触发的呼吸频率的存在增加了两个测量部位LDF的调制。虽然触发呼吸导致指尖的时间平均LDF下降,但前臂的时间平均LDF不受影响。考虑到不同的神经支配和流体静力效应,结果得出以下结论:手指血管富含肾上腺素能受体,这会导致α1介导的血管收缩。与手指血管相比,前臂血管似乎受肾上腺素能以及胆碱能控制。流体静力成分在前臂掌侧部位似乎更为普遍。

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