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Relaxation Oscillations of the Human Body Surface Temperature after External Impacts

机译:外部冲击后人体表面温度的松弛振荡

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The time dependences of the surface temperature of the human body were measured after various external impacts: a cold test, low-intensity optical irradiation, etc. One of the main components contributing to the value of surface temperature is blood microcirculation. The temperature was measured using thermographs in the infrared range. Relaxation oscillations were found on the time dependences. These temperature fluctuations have frequencies significantly lower than those calculated for normal blood flow and, apparently, are caused by other factors. The aim of this work is to determine the possible periods of oscillations arising after exposure. The problem of finding periods is a solution to an incorrect inverse problem. It is performed a Fourier analysis of the obtained time dependences of temperature by the F-approximation method. The calculated periods of possible fluctuations that occur when restoring the palm temperature after a cold test are 4, 7-8, 1011, 14, and 18 minutes. For the case of oscillations that occur when the forearm is irradiated with low-intensity radiation (640 nm) for 6, 10, 15 min, the following periods of temperature fluctuations during relaxation were obtained: 1.5-2, 3-5, 7-9, 11-14, 18-20, 27, 32 minutes. Probably the response times to external influences in the form of changes in surface temperature are about 20 minutes and they are determined by the work of the hypothalamus and associated with regulatory processes involving feedback that start after the system leaves the equilibrium state and try to return it back.
机译:人体表面温度随时间的变化是在各种外部影响之后进行的:冷测试,低强度光照射等。血液微循环是影响表面温度值的主要因素之一。使用红外范围内的热像仪测量温度。发现弛豫振荡与时间有关。这些温度波动的频率明显低于正常血流计算的频率,并且显然是由其他因素引起的。这项工作的目的是确定曝光后可能出现的振荡周期。查找周期的问题是对不正确的逆问题的一种解决方案。通过F逼近法对获得的温度的时间依赖性进行傅立叶分析。在冷测试后恢复手掌温度时,可能发生的可能波动的计算时间为4、7-8、1011、14和18分钟。对于前臂用低强度辐射(640 nm)照射6、10、15分钟时发生振荡的情况,获得以下松弛过程中的温度波动时期:1.5-2、3-5、7- 9、11-14、18-20、27、32分钟。可能以表面温度变化的形式对外部影响的响应时间约为20分钟,并且取决于下丘脑的工作,并且与涉及反馈的调节过程相关,该反馈过程是在系统离开平衡状态并尝试使其返回后开始的背部。

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