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Experimental Characterization of the Domains of Coupling and Uncoupling Between Surface Temperature and Skin Blood Flow

机译:表面温度与皮肤血流之间耦合和解耦域的实验表征

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Purpose: Local therapeutic cooling to soft tissue is known to sometimes cause necrosis and neuropathy via cold-induced ischemia. The purpose of this study is to quantify the occurrence and persistence of cold-induced ischemia associated with cryotherapy. Methods: FDA approved or exempt cryotherapy devices were applied for localized cooling on human subjects via recommended user protocols. Subjects were instrumented on the cooling site with thermocouples and laser Doppler blood flow probes. Results: Local cutaneous blood perfusion was depressed to as little as 15% to 20% of baseline and remained depressed for hours following the cessation of active cooling. Induction of vasoconstriction was coupled to active surface cooling, and persistence of vasoconstriction was decoupled from subsequent passive surface rewarming. Conclusions: Skin blood flow drops progressively during active cooling of skin, but during subsequent passive rewarming the flow may remain deeply depressed and decoupled from the increasing skin temperature. There is a large hysteresis between skin temperature and blood flow during the tissue cooling and warming cycle, having important implications for therapeutic efficacy and safety.
机译:目的:已知对软组织的局部治疗性冷却有时会通过冷诱发的缺血而引起坏死和神经病变。这项研究的目的是量化与冷冻疗法相关的冷诱发缺血的发生和持续性。方法:通过推荐的用户规程,将FDA批准或豁免的冷冻疗法设备应用于人类对象的局部冷却。使用热电偶和激光多普勒血流探头在冷却部位对受试者进行检测。结果:局部皮肤血液灌注降低到基线的15%到20%,并且在停止主动冷却后持续几个小时保持降低。血管收缩的诱导与主动表面冷却相耦合,并且血管收缩的持久性与随后的被动表面再热分离。结论:在皮肤主动冷却期间,皮肤血流逐渐下降,但在随后的被动重新加热过程中,血流可能仍然深陷并与皮肤温度升高脱钩。在组织冷却和加热周期期间,皮肤温度和血流之间存在很大的滞后现象,这对治疗功效和安全性具有重要意义。

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