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Large-scale integrated model is useful for understanding heart mechanisms and developments of medical therapy

机译:大规模集成模型对于了解医疗治疗的心脏机制和发展是有用的

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In this paper, we discuss the need for a large-scale integrated computer heart model to understand cardiac pathophysiology and to assist in the development of novel treatments through our experiences with the "UT-heart" simulator. The UT-heart simulator is a multi-scale, multi-physics heart simulator that integrates and visualizes our knowledge of cardiac function in various aspects and scales. To demonstrate the usefulness of this model, we focus especially on two problems in cardiac anatomy and physiology. In the first application, the mechanistic implication of complex fiber and laminar structures is analyzed with respect to optimality of pumping performance. In the second application, the coronary circulation is analyzed, to identify factors that determine the behavior of the microcirculatory system. These two examples indicate not only the importance of the integration technique, but also the need to resolve structural complexities of the heart in the modeling. This leads naturally to incorporating high performance computing in medical therapy.
机译:在本文中,我们讨论了大规模集成计算机心脏模型,以了解心脏病病理学,并通过我们与“UT-HERT”模拟器的经验协助开发新的治疗方法。 UT-HERED SIMULIDATOR是一种多尺寸,多物理心脏模拟器,可集成和可视化我们在各个方面和尺度中的心功能知识。为了证明这种模型的有用性,我们特别关注心脏解剖和生理学中的两个问题。在第一次申请中,相对于泵送性能的最优性分析复杂纤维和层状结构的机械暗示。在第二次应用中,分析冠状动脉循环,以确定确定微循环系统行为的因素。这两个示例不仅表明了集成技术的重要性,而且需要解决建模中心脏的结构复杂性。这自然导致高性能计算在医疗疗法中。

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