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Heat Transfer Behavior and Physiological Effects of Living Human Skin under Local Radiative Thermal Stimulation

机译:局部辐射热刺激下活人皮肤的传热行为和生理效应

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In order to develop a moxibustion treatment device that can heat appropriately by radiation while lowering the risk of burning by the moxa, a local radiative heating device for skin was fabricated and the unsteady response of the skin surface and internal temperature during infrared radiative heating were evaluated based on subjective experiments and numerical analysis. Because it was necessary to perform non-contact temperature measurements of the heated surface to control the heat, methods of evaluating and correcting the impact on measurement precision were studied. The study clarified that as skin was heated, the skin surface temperature rose, and the blood flow speed around the heated part increased. A local thermal sensation corresponded to the increase. Absorption of radiation by skin occurred only near the surface, so it was concluded that a useful way to effectively heat skin, was to set a certain temperature as the upper limit of the surface temperature, and lower the heat when this temperature has been reached, wait for the heat to penetrate more deeply, then restart heating.
机译:为了开发能够通过放射线适当加热并降低由艾灸引起的灼伤的风险的艾灸治疗仪,制造了局部皮肤用放射线加热装置,并评价了红外线辐射加热时皮肤表面和内部温度的不稳定响应。基于主观实验和数值分析。由于必须进行加热表面的非接触温度测量以控制热量,因此研究了评估和纠正对测量精度影响的方法。研究表明,随着皮肤的加热,皮肤表面温度上升,加热部位周围的血流速度增加。局部热感对应于增加。皮肤吸收的辐射仅发生在表面附近,因此可以得出结论,有效加热皮肤的一种有用方法是将某个温度设置为表面温度的上限,并在达到该温度时降低热量,等待热量深入,然后重新开始加热。

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