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静磁场对皮肤血流运动影响的小波分析:利用活体大鼠模型进行的研究

Wavelet analysis of the effects of static magnetic field on skin blood flowmotion: investigation using an in vivo rat model.

作者信息

Li Zengyong, Tam Eric W C, Mak Arthur F T, Lau Roy Y C

机构信息

Department of Health Technology & Informatics, The Hong Kong Polytechnic University, Kowloon, Hong Kong SAR, China.

出版信息

In Vivo. 2007 Jan-Feb;21(1):61-8.

Abstract

BACKGROUND

In the literature, various in vivo studies on animals have demonstrated that a static magnetic field (SMF) might maintain microvascular tone in the cutaneous microcirculatory system by its biphasic effects on vasomotion. Here, the effects of locally applied SMF on skin blood flowmotion within the stressed or unstressed skin in the trochanter area were evaluated using wavelet analysis of skin blood perfusion as measured by laser Doppler flowmetry (LDF) in anesthetized rats.

MATERIALS AND METHODS

Forty-eight experimental trials were carried out on twelve Sprague-Dawley rats. Four experimental groups were formed at random: i) Group CNL (no loading or SMF exposure; n = 12 trials); ii) Group SMF (SMF exposure only; n = 12 trials); iii) Group L (stressed skin without SMF exposure; n = 12 trials); iv) Group L + SMF (stressed skin with SMF exposure; n = 12 trials).

RESULTS

SMF significantly enhanced endothelial related metabolic activity (0.01-0.05 Hz) in the stressed skin (p = 0.03). However, SMF did not induce significant change in the flowmotion amplitude in the unstressed skin (p = 0.22).

CONCLUSION

The modulating effect of SMF on skin blood flowmotion might be related to the vascular tone modified by prolonged loading.

摘要

背景

在文献中,各种动物体内研究表明,静磁场(SMF)可能通过其对血管运动的双相作用维持皮肤微循环系统中的微血管张力。在此,通过对麻醉大鼠激光多普勒血流仪(LDF)测量的皮肤血流灌注进行小波分析,评估局部施加的SMF对转子区域受压或未受压皮肤内皮肤血流运动的影响。

材料与方法

对12只Sprague-Dawley大鼠进行了48次实验。随机形成四个实验组:i)CNL组(无负荷或无SMF暴露;n = 12次试验);ii)SMF组(仅SMF暴露;n = 12次试验);iii)L组(受压皮肤无SMF暴露;n = 12次试验);iv)L + SMF组(受压皮肤有SMF暴露;n = 12次试验)。

结果

SMF显著增强了受压皮肤中内皮相关代谢活性(0.01 - 0.05 Hz)(p = 0.03)。然而,SMF未引起未受压皮肤中血流运动幅度的显著变化(p = 0.22)。

结论

SMF对皮肤血流运动的调节作用可能与长期负荷改变的血管张力有关。

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