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首页> 外文期刊>Communications in Numerical Methods in Engineering >Patient-specific computational biomechanics of the brain without segmentation and meshing
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Patient-specific computational biomechanics of the brain without segmentation and meshing

机译:无需分割和网格划分的特定于患者的大脑计算生物力学

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摘要

Motivated by patient-specific computational modelling in the context of image-guided brain surgery, we propose a new fuzzy mesh-free modelling framework. The method works directly on an unstructured cloud of points that do not form elements so that mesh generation is net required. Mechanical properties are assigned directly to each integration point based on fuzzy tissue classification membership functions without the need for image segmentation. Geometric integration is performed over an underlying uniform background grid. The verification example shows that, while requiring no hard segmentation and meshing, the proposed model gives, for all practical purposes, equivalent results to a finite element model.
机译:在图像引导的脑外科手术的背景下,受患者特定的计算建模的启发,我们提出了一种新的无网格模糊建模框架。该方法直接在不构成元素的非结构化点云上工作,因此需要生成网格。机械属性基于模糊组织分类隶属函数直接分配给每个积分点,而无需进行图像分割。几何积分是在底层统一背景网格上执行的。验证示例表明,尽管不需要硬分割和网格划分,但所提出的模型在所有实际目的上都可以得到与有限元模型等效的结果。

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