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DEVELOPMENT OF PHYSIOLOGICAL SIMULATION ENVIRONMENT FOR HEMODYNAMICS OF CARDIOVASCULAR SYSTEM

机译:心血管系统血流动力学生理仿真环境的发展

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The purpose of this study is to provide a physiological simulation environment for modeling and diagnosing the cardiovascular system as part of circulatory system in the whole body. The circulatory system model aims to represent various changes and diseases quantitatively based on clinical measurements. In respect with some measurement or diagnosis levels, the circulatory system could be modeled into a target granularity of sizes, resolutions, or timescales. There are opposite advantages and shortcomings in the macro and micro models for physiological simulation. On the one hand, the macro model contains a wide range of physiological information for various organs, functions, and subsystems within the whole body, but it is impossible to be detailed into small time units for time-dependent variables. On the other hand, the micro model enables to analyze microscopic behavior only for a single subsystem, because the extra functions of the whole body are omitted. Therefore, the proposed physiological simulation method integrates macro circulatory and micro cardiovascular system models, so that long-term macroscopic body conditions and short-term microscopic blood flow could be concurrently simulated.
机译:本研究的目的是提供一种用于建模和诊断心血管系统的生理学模拟环境,作为全身循环系统的一部分。循环系统模型旨在根据临床测量定量地代表各种变化和疾病。在一些测量或诊断水平方面,循环系统可以建模成尺寸,分辨率或时间尺度的目标粒度。具有相反的优点和缺点,用于生理模拟。一方面,宏模型包含全身内部的各种器官,功能和子系统的广泛的生理信息,但是不可能详细纳入时间依赖变量的小时间单位。另一方面,微型模型使得能够分析单个子系统的微观行为,因为省略了整个身体的额外功能。因此,所提出的生理仿真方法集成了宏循环和微型心血管系统模型,使得可以同时模拟长期宏观体状和短期微观血流。

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