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THEORETICAL PREDICTIONS OF BODY TISSUE AND BLOOD TEMPERATURE DURING COLD WATER IMMERSION USING A WHOLE BODY MODEL

机译:利用全人体模型对冷水浸入过程中人体组织和血液温度的理论预测

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Understanding the thermal response of the human body under various environmental and thermal stress conditions is of growing importance. Calculation of the core body temperature and the survivability of the body during immersion in cold water require detailed modeling of both the body tissue and the time-dependent blood temperature. Predicting body temperature changes under cold stress conditions is considered challenging since factors like thickness of the skin and blood perfusion within the skin layer become influential. Hence, the aim of this research was to demonstrate the capability of a recently developed whole body heat transfer model that simulates the tissue-blood interaction to predict the cooling of the body during immersion in cold water. It was shown that computed drop in core temperature agrees within 0.57 °C of the results calculated using a detailed network model. The predicted survival time in 0 °C water was less than an hour whereas in 18.5 °C water, the body attained a relatively stable core temperature of 34 °C in 2.5 hours.
机译:了解人体在各种环境和热应力条件下的热响应变得越来越重要。要计算核心体温和浸入冷水中时的生存能力,就需要对人体组织和随时间变化的血液温度进行详细建模。由于诸如皮肤的厚度和皮肤层内的血液灌注等因素都具有影响力,因此在冷压力条件下预测体温变化被认为具有挑战性。因此,本研究的目的是证明最近开发的全身传热模型的功能,该模型模拟组织与血液之间的相互作用,以预测浸入冷水中时身体的冷却情况。结果表明,计算得出的核心温度下降与使用详细网络模型计算出的结果相吻合在0.57°C之内。在0°C的水中,预计的生存时间不到一个小时,而在18.5°C的水中,人体在2.5小时内达到了34°C的相对稳定的核心温度。

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