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用于实时模拟的呼吸生理学和病理生理学参数化

Parameterization of Respiratory Physiology and Pathophysiology for Real-Time Simulation.

作者信息

Webb Jeffrey B, Bray Aaron, Clipp Rachel B

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:2274-2278. doi: 10.1109/EMBC44109.2020.9176364.

Abstract

We have refactored the Pulse Physiology Engine respiratory software with enhanced parameterization for improved simulation functionality and results. Realistic patient variability can be applied using discretized lumped-parameters that define lung volumes, compliances, and resistances. A new sigmoid compliance waveform helps meet validation of compartment pressures, flows, volumes, and substance values. Further parameterization and enhanced logic for the application of pathophysiology allows for more accurate modeling of both restrictive and obstructive diseases for mild, moderate, and severe cases.Clinical Relevance- This free and open model provides a well-validated respiratory system for integration with medical simulations and research. It improves the Pulse modeling software and allows for new, low-cost training and in silico testing use-cases. Applications include virtual/augmented environments, manikin-based simulations, and clinical explorations.

摘要

我们已对脉搏生理引擎呼吸软件进行了重构,增强了参数设置,以改进模拟功能和结果。可以使用定义肺容积、顺应性和阻力的离散集总参数来应用现实的患者变异性。一种新的S形顺应性波形有助于满足隔室压力、流量、容积和物质值的验证。病理生理学应用的进一步参数设置和增强逻辑允许对轻度、中度和重度病例的限制性和阻塞性疾病进行更准确的建模。临床相关性——这个免费的开放模型提供了一个经过充分验证的呼吸系统,可与医学模拟和研究相结合。它改进了脉搏建模软件,并允许进行新的低成本培训和虚拟测试用例。应用包括虚拟/增强环境、基于人体模型的模拟和临床探索。

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