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Three-dimensional finite element models from magnetic resonance images as a structural framework for continuum analysis of the heart

机译:磁共振图像的三维有限元模型作为心脏连续性分析的结构框架

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Abstract: Magnetic resonance imaging (MRI) is an extremely versatile technique for noninvasive imaging of the anatomy, structure, and physiological function of the heart and other soft tissues and organs. Although mathematical models have often been used to enhance the information content of medical images, these models are most often based on the physics of the imaging system rather that the properties of the target organ or tissue. We use finite element (FE) models of regional mechanical and electrical function in the intact heart to compute 3D distributions of important physiological field variables, such as myocardial stress, that cannot be imaged directly. A parametric model of the heart based on the physical properties of the organ as a material continuum provides a general and convenient way to synthesize clinical data, such as multidimensional images, with experimental tests, such as biomechanical and histological studies. !7
机译:摘要:磁共振成像(MRI)是一种用于心脏和其他软组织器官的解剖结构,结构和生理功能的非侵入性成像技术,用途极为广泛。尽管经常使用数学模型来增强医学图像的信息内容,但是这些模型通常是基于成像系统的物理原理,而不是目标器官或组织的特性。我们使用完整心脏中区域机械和电气功能的有限元(FE)模型来计算无法直接成像的重要生理场变量(例如心肌压力)的3D分布。基于器官的物理特性作为材料连续体的心脏参数模型为合成临床数据(例如多维图像)和实验测试(例如生物力学和组织学研究)提供了一种通用且方便的方法。 !7

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