Modeling mechanical cardiopulmonary interactions for virtual environments.

J M Kaye
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Abstract

We have developed a computer system for modeling mechanical cardiopulmonary behavior in an interactive, 3D virtual environment. The system consists of a compact, scalar description of cardiopulmonary mechanics, with an emphasis on respiratory mechanics, that drives deformable 3D anatomy to simulate mechanical behaviors of and interactions between physiological systems. Such an environment can be used to facilitate exploration of cardiopulmonary physiology, particularly in situations that are difficult to reproduce clinically. We integrate 3D deformable body dynamics with new, formal models of (scalar) cardiorespiratory physiology, associating the scalar physiological variables and parameters with corresponding 3D anatomy. Our approach is amenable to modeling patient-specific circumstances in two ways. First, using CT scan data, we apply semi-automatic methods for extracting and reconstructing the anatomy to use in our simulations. Second, our scalar models are defined in terms of clinically-measurable, patient-specific parameters. This paper describes our approach and presents a sample of results showing normal breathing and acute effects of pneumothoraces.

虚拟环境中机械心肺相互作用的建模。
我们开发了一个计算机系统,用于在交互式3D虚拟环境中模拟机械心肺行为。该系统由心肺力学的一个紧凑的标量描述组成,重点是呼吸力学,它驱动可变形的3D解剖来模拟生理系统之间的力学行为和相互作用。这样的环境可以用来促进心肺生理学的探索,特别是在临床难以重现的情况下。我们将三维可变形体动力学与新的(标量)心肺生理学的正式模型相结合,将标量生理变量和参数与相应的三维解剖相关联。我们的方法可以通过两种方式对患者特定情况进行建模。首先,使用CT扫描数据,我们采用半自动方法提取和重建解剖结构,用于我们的模拟。其次,我们的标量模型是根据临床可测量的、患者特定的参数来定义的。本文描述了我们的方法,并提出了一个样本的结果显示正常呼吸和急性气胸的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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