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Phase synchronization of skin blood flow oscillations in humans under asymmetric local heating

机译:在非对称局部加热下人体皮肤血流量振荡的相位同步

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摘要

AbstractThe hypothesis is proposed that an external local stimulus may cause a change in the phase relationships of oscillations in the peripheral skin blood flow of contralateral extremities. To test this assumption, the wavelet phase coherence of skin blood flow oscillations of the left and right forearms of 18 healthy volunteers of both sexes at rest and in response to unilateral local heating was investigated. An area of the skin of the left forearm was exposed to heat and the native blood perfusion in an area of the skin of the right forearm was recorded simultaneously. It was shown that an asymmetric local change of skin perfusion led to a significant change in the phase relationships of the blood flow oscillations in all the analyzed frequency ranges. A significant reduction of phase synchronization of oscillations of skin blood flow in the range of endothelial, neurogenic, and myogenic activity, as well as in the range of respiratory rhythm was revealed. In contrast, in the range of the cardiac rhythm, a significant increase in phase synchronization of the oscillations of the blood flow of contralateral skin areas of the forearm was detected.
机译:<标题>抽象 <帕拉>提出了外部局部刺激可能导致对侧末端外周皮肤血流振荡相位关系的变化。为了测试这种假设,研究了左右前臂皮肤血流振荡的小波相干振荡,右前臂的两种健康志愿者在休息时和响应单边局部加热。左前臂的皮肤面积暴露于热量,并同时记录右前臂的皮肤区域中的天然血液灌注。结果表明,皮肤灌注的不对称局部变化导致所有分析的频率范围内的血流振荡相位关系的显着变化。显着降低了内皮,神经发生和肌基活性范围内皮肤血流的振荡相位同步,以及呼吸节律的范围。相反,在心律节奏的范围内,检测到前臂对侧皮肤区域的血流振荡相位同步的显着增加。

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