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Active Model with Orthotropic Hyperelastic Material for Cardiac Image Analysis

机译:具有正交高速材料的活性模型,用于心脏图像分析

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Meaningful physiological models are important for studying cardiac physiology. For cardiac image analysis, the models used should be detailed enough to describe the macroscopic physiological behaviors, but should not be too complicated for the inverse problems. To achieve this goal, we propose to use an orthotropic hyperelastic biomechanical model, which has only seven parameters but was reported as the best among the five tested well-known models in a comparative study. Combining with the active contraction forces provided by electromechanical models, the cyclic cardiac dynamics can be available to provide the physiological foundation for cardiac image analysis. To facilitate the complicated inverse problems, the system is implemented under the Cartesian coordinate system, and we propose the corresponding cardiac specific boundary conditions for anatomically realistic deformations. Experiments with analytical solutions were performed to verify the correctness of the implementation, and cardiac cycles were simulated to verify the physiological plausibility of the proposed model.
机译:有意义的生理模型对于研究心脏生理学很重要。对于心脏图像分析,所使用的模型应该详细描述宏观生理行为,但对于逆问题不应该过于复杂。为了实现这一目标,我们建议使用七个参数的正交高度塑性生物力学模型,但在比较研究中被报告为五个测试的众所周知模型中的最佳。结合机电模型提供的活跃收缩力,可以使用循环心动力学来提供心脏图像分析的生理基础。为了便于复杂的逆问题,系统在笛卡尔坐标系下实施,我们提出了对解剖学现实变形的相应心脏特定边界条件。进行分析溶液的实验以验证实施的正确性,模拟心脏循环以验证所提出的模型的生理合理性。

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