Simulating of human physiological supersystems: interactions of cardiovascular, thermoregulatory and respiratory systems

R. Grygoryan, A. Degoda, T.V. Lyudovyk, O. Yurchak
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Abstract

Special quantitative model of the human thermoregulatory system (MTS) functioning with cardiovascular and lung systems is created. These systems form a human physiological supersystem (HPSS). MTS describes thermoregulatory responses to alterations of both external environmental physical characteristics and internal biological characteristics. Algorithms provide designing of scenarios including simulation of either short-time or long-time (hours or days) observations. Input data include different combinations of environmental variables (air or water temperature, air humidity, wind or water flow speed, light intensity, infrared radiation) for a naked or wear human, as well as for given dynamics of biological characteristics (rate of heat production including its components associated with metabolism and ATP molecules leasing during mental and physical activities). Human body is presented by a core, blood, and a skin compartments. Skin and lung evaporation are under hypothalamic control based on afferent impulse patterns from internal, and skin heat and cold receptors. Dynamic output data include blood, hypothalamic, and skin temperatures, hemodynamic parameters like heart rate, cardiac output, regional blood flows, vascular resistances, blood pressures, and regional blood volumes. Serotonin and melatonin concentrations modulating biological heat production rate are associated with a day/night light intensity. Currently, the PCbased simulator is autonomous software to be used both for educational purposes and for providing of special computer research. In a near future, this simulator has to be widened by models of kidneys, and a mechanism of liverpancreas interaction.
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模拟人体生理超级系统:心血管、体温调节和呼吸系统的相互作用
建立了人体体温调节系统(MTS)与心血管系统和肺部系统功能的特殊定量模型。这些系统构成了人体生理超级系统(HPSS)。MTS 描述了体温调节系统对外部环境物理特征和内部生物特征变化的反应。该算法可设计各种情景,包括模拟短时间或长时间(数小时或数天)的观察结果。输入数据包括裸体或穿戴人体的不同环境变量组合(空气或水温、空气湿度、风速或水流速度、光照强度、红外辐射),以及给定的生物特征动态(产热率,包括与新陈代谢相关的热量成分,以及脑力和体力活动中的 ATP 分子租赁)。人体由内核、血液和皮肤组成。皮肤和肺的蒸发受下丘脑的控制,而下丘脑的控制则基于内部和皮肤冷热感受器的传入冲动模式。动态输出数据包括血液、下丘脑和皮肤温度,以及心率、心输出量、区域血流量、血管阻力、血压和区域血容量等血液动力学参数。调节生物产热率的血清素和褪黑素浓度与昼夜光照强度相关联。目前,基于 PC 的模拟器是自主软件,既可用于教育目的,也可用于特殊计算机研究。在不久的将来,该模拟器还将增加肾脏模型和肝胰脏相互作用机制。
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