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An integrated model of the thermoregulatory and respiratory systems of the human body

机译:人体温寄生和呼吸系统的综合模型

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This work aims to develop a mathematical model for computing the distribution of temperature, O_2, and CO_2 in the human body, depending on the ambient conditions. The body is divided into segments, including layers of tissues and blood compartments, where mass and energy balances are applied. The inclusion of O_2 and CO_2 transfer mechanisms throughout all segments and tissues of the human body is one of the great novelties of this work. It also includes the exothermic metabolic reactions in the tissues, the transportation of O_2 and CO_2 by the blood, and the energy exchanged with the environment through the skin and by ventilation. The model also includes the regulation of metabolism, circulation, ventilation, and sweating, depending on the body temperature and the concentrations of O_2 and CO_2 in the blood. The lungs are represented by alveolar and blood compartments, with diffusion between them. Comparisons with experimental data from the existing literature show that the proposed model is suitable for representing transient exposure to cold and warm ambient temperatures, low concentration of O_2, and high concentrations of CO_2. In the end, some results demonstrate the effect of ambient temperature on the distribution of temperature, O_2, and CO_2 across segments, blood, and tissues. Shivering in a cold environment reduces the concentration of O_2 and increases the concentration of CO_2 in the muscles, which results in increased ventilation and blood circulation. The concentration of gases in the skin depends mainly on variations in the skin's circulation with the environment, which alters the availability of O_2 and the elimination of CO_2. Small variations were found in the concentrations of O_2 and CO_2 in the brain and lungs.
机译:这项工作旨在根据环境条件,开发用于计算人体中温度,O_2和CO_2的分布的数学模型。体内分为段,包括组织层和血液隔室,其中施加质量和能量余量。在人体的所有段和组织中包含O_2和CO_2转移机制是这项工作的伟大新科技之一。它还包括组织中的放热代谢反应,通过血液的O_2和CO_2的运输,以及通过皮肤和通风与环境交换的能量。该模型还包括调节代谢,循环,通风和出汗,取决于体温和血液中O_2和CO_2的浓度。肺部由肺泡和血液隔室表示,它们之间的扩散。与现有文献的实验数据的比较表明,所提出的模型适用于代表冷热环境温度,低浓度O_2和高浓度的CO_2的瞬时暴露。最后,一些结果证明了环境温度对横跨段,血液和组织的温度,O_2和CO_2分布的影响。在冷环境中颤抖降低了O_2的浓度,并增加了肌肉中CO_2的浓度,这导致通风和血液循环增加。皮肤中的气体浓度主要取决于皮肤循环与环境的变化,这改变了O_2的可用性和消除CO_2。在脑和肺中O_2和CO_2的浓度中发现了小的变化。

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