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Synchronization of sacral skin blood flow oscillations in response to local heating

机译:骶骨血流振荡同步响应局部加热

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Local heating causes an increase in skin blood flow by activating sensory axon reflex and metabolic nitric oxide controls. It has been observed that the remote skin area without temperature changes also shows a slightly increase in blood flow. The responsible mechanism of this indirect vasodilation remains unclear. We hypothesized that the remote skin area will have enhanced synchronization of blood flow oscillations (BFO), thus inducing a vasodilatory response. We studied BFO in two sites separated 10cm of the sacral skin in 12 healthy people. Ensemble empirical mode decomposition method was used to decompose blood flow signals into a set of intrinsic mode functions (IMFs), and an IMF was selected to quantify each of myogenic, neurogenic, and metabolic modes of BFO. Then the instantaneous phase of the mode was calculated using the Hilbert transform. From the time series of phase difference between a pair of characteristic modes, we detected the epochs of phase synchronization and estimated the level of statistical significance using surrogate time series. The results showed that phase synchronization between neurogenic BFO was significantly higher in the period of the maximal vasodilation. We also observed a weak synchronization between myogenic BFO of the two skin sites. Our results suggested that synchronization of BFO may be associated with the changes in skin blood flow at the non-heated site.
机译:通过激活感官轴突反射和代谢一氧化氮对照,局部加热导致皮肤血流增加。已经观察到没有温度变化的遥控性皮肤区域也显示出血液流动略微增加。这种间接血管舒张的负责机制仍不清楚。我们假设遥控皮肤区域具有增强的血流振荡同步(BFO),从而诱导血管舒张响应。我们研究了两个站点的BFO分离了12名健康的人10厘米的骶骨。集合经验模式分解方法用于将血流信号分解成一组内在模式功能(IMF),选择IMF以量化BFO的肌菌,神经原性和代谢模式。然后使用Hilbert变换计算模式的瞬时阶段。从一对特征模式之间的相位差的时间序列,我们检测了相位同步的时期,并估计使用代理时间序列的统计显着率。结果表明,最大血管舒张期间神经源BFO之间的相位同步显着高。我们还观察到两种皮肤部位的肌遗传学BFO之间的弱同步。我们的研究结果表明,BFO的同步可能与未加热部位的皮肤血流的变化相关联。

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