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Semi-Automatic Enhancement of Atrial Models to Include Atrial Architecture and Patient Specific Data: For Biophysical Simulations

机译:半自动增强心房模型,包括心房架构和患者特定数据:用于生物物理模拟

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Despite its large influence on biophysical simulations, the underlying anatomical representation is often oversimplified. The need for mode detailed anatomical models has been identified by numerous authors [1-3]. An atrial model including macro and microscopic muscle architecture would help improve the correlation between real and virtual ECGs. In addition it provides a mean to de-couple the simulation domains (anatomy and physiology). A tool developed to create such models is presented. It readily allows fine-tuning factors such as: connectivity, discontinuity, fiber orientation, muscle architecture, and heterogeneities. The algorithms that speed up the conversion of a 3D heart mesh in raw format, into a detailed model of the atria are explained. As a result, patient-specific models are brought one step closer.
机译:尽管对生物物理模拟有很大影响,但潜在的解剖表现往往超薄。对模式详细解剖模型的需求已被许多作者识别[1-3]。包括宏观和微观肌肉架构的心房模型有助于提高实际和虚拟ECG之间的相关性。此外,它提供了脱耦模拟结构域(解剖学和生理学)的平均值。提出了一种用于创建此类模型的工具。它很容易允许微调因素,例如:连接,不连续性,纤维方向,肌肉架构和异质性。解释了加速RAW格式的3D心网转换为ATRIA的详细模型的算法。结果,患者特定的模型较近一步。

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