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表征人体皮肤血流对不同局部皮肤温度扰动的调节作用。

Characterizing human skin blood flow regulation in response to different local skin temperature perturbations.

作者信息

Wu Y, Nieuwenhoff M D, Huygen F J P M, van der Helm F C T, Niehof S, Schouten A C

机构信息

Department of Biomechanical Engineering, Delft University of Technology, Mekelweg 2, 2628CD Delft, The Netherlands.

Department of Anesthesiology and Pain Medicine, Erasmus MC University Medical Center, P.O. box 2040, 3000CA Rotterdam, The Netherlands.

出版信息

Microvasc Res. 2017 May;111:96-102. doi: 10.1016/j.mvr.2016.12.007. Epub 2016 Dec 21.

Abstract

Small nerve fibers regulate local skin blood flow in response to local thermal perturbations. Small nerve fiber function is difficult to assess with classical neurophysiological tests. In this study, a vasomotor response model in combination with a heating protocol was developed to quantitatively characterize the control mechanism of small nerve fibers in regulating skin blood flow in response to local thermal perturbation. The skin of healthy subjects' hand dorsum (n=8) was heated to 42°C with an infrared lamp, and then naturally cooled down. The distance between the lamp and the hand was set to three different levels in order to change the irradiation intensity on the skin and implement three different skin temperature rise rates (0.03°C/s, 0.02°C/s and 0.01°C/s). A laser Doppler imager (LDI) and a thermographic video camera recorded the temporal profile of the skin blood flow and the skin temperature, respectively. The relationship between the skin blood flow and the skin temperature was characterized by a vasomotor response model. The model fitted the skin blood flow response well with a variance accounted for (VAF) between 78% and 99%. The model parameters suggested a similar mechanism for the skin blood flow regulation with the thermal perturbations at 0.03°C/s and 0.02°C/s. But there was an accelerated skin vasoconstriction after a slow heating (0.01°C/s) (p-value<0.05). An attenuation of the skin vasodilation was also observed in four out of the seven subjects during the slow heating (0.01°C/s). Our method provides a promising way to quantitatively assess the function of small nerve fibers non-invasively and non-contact.

摘要

小神经纤维可响应局部热扰动调节局部皮肤血流。小神经纤维功能难以通过经典神经生理学测试进行评估。在本研究中,开发了一种血管舒缩反应模型并结合加热方案,以定量表征小神经纤维在响应局部热扰动时调节皮肤血流的控制机制。用红外灯将8名健康受试者手背部皮肤加热至42°C,然后自然冷却。将灯与手之间的距离设置为三个不同水平,以改变皮肤的照射强度并实现三种不同的皮肤温度上升速率(0.03°C/s、0.02°C/s和0.01°C/s)。激光多普勒成像仪(LDI)和热成像摄像机分别记录皮肤血流和皮肤温度的时间变化情况。通过血管舒缩反应模型表征皮肤血流与皮肤温度之间的关系。该模型能很好地拟合皮肤血流反应,方差解释率(VAF)在78%至99%之间。模型参数表明,在0.03°C/s和0.02°C/s的热扰动下,皮肤血流调节机制相似。但在缓慢加热(0.01°C/s)后出现了加速的皮肤血管收缩(p值<0.05)。在缓慢加热(0.01°C/s)过程中,7名受试者中有4名还观察到皮肤血管舒张减弱。我们的方法为无创、非接触定量评估小神经纤维功能提供了一种有前景的途径。

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