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Space physiology IV: Mathematical modeling of the cardiovascular system in space exploration

机译:太空生理学IV:太空探索中心血管系统的数学建模

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Mathematical modeling represents an important tool for analyzing cardiovascular function during spaceflight. This review describes how modeling of the cardiovascular system can contribute to space life science research and illustrates this process via modeling efforts to study postflight orthostatic intolerance (POI), a key issue for spaceflight. Examining this application also provides a context for considering broader applications of modeling techniques to the challenges of bioastronautics. POI, which affects a large fraction of astronauts in stand tests upon return to Earth, presents as dizziness, fainting and other symptoms, which can diminish crew performance and cause safety hazards. POI on the Moon or Mars could be more critical. In the field of bioastronautics, POI has been the dominant application of cardiovascular modeling for more than a decade, and a number of mechanisms for POI have been investigated. Modeling approaches include computational models with a range of incorporated factors and hemodynamic sophistication, and also physical models tested in parabolic and orbital flight. Mathematical methods such as parameter sensitivity analysis can help identify key system mechanisms. In the case of POI, this could lead to more effective countermeasures. Validation is a persistent issue in modeling efforts, and key considerations and needs for experimental data to synergistically improve understanding of cardiovascular responses are outlined. Future directions in cardiovascular modeling include subject-specific assessment of system status, as well as research on integrated physiological responses, leading, for instance, to assessment of subject-specific susceptibility to POI or effects of cardiovascular alterations on muscular, vision and cognitive function.
机译:数学建模是分析航天过程中心血管功能的重要工具。这篇综述描述了心血管系统建模如何有助于太空生命科学研究,并通过建模研究飞行后立位不耐受(POI)(航天的关键问题)的努力来说明这一过程。检查此应用程序还为考虑将建模技术更广泛地应用于生物航天的挑战提供了背景。 POI在返回地面时会影响到大部分宇航员的考验,表现为头昏眼花,昏厥和其他症状,这会削弱机组人员的表现并造成安全隐患。月球或火星上的POI可能更为关键。在生物航空领域,POI一直是心血管建模的主要应用,并且已经研究了许多POI机制。建模方法包括具有一系列综合因素和血流动力学复杂性的计算模型,以及在抛物线和轨道飞行中测试过的物理模型。参数敏感性分析等数学方法可以帮助您识别关键的系统机制。对于POI,这可能会导致更有效的对策。验证是建模工作中的一个长期问题,概述了对实验数据进行协同改善对心血管反应的理解的关键考虑因素和需求。心血管建模的未来方向包括特定对象对系统状态的评估,以及对综合生理反应的研究,例如,以评估特定对象对POI的易感性或心血管改变对肌肉,视觉和认知功能的影响。

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