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Method to geometrically personalize a detailed finite element model of the spine

机译:对脊柱的详细有限元模型进行几何个性化的方法

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摘要

To date, developing geometrically personalized and detailed solid finite element models of the spine remains a challenge, notably due to multiple articulations and complex geometries. To answer this problem, a methodology based on a free form deformation technique (kriging) was developed to deform a detailed reference finite element mesh of the spine (including discs and ligaments) to the patient-specific geometry of 10 and 82-year old asymptomatic spines. Different kriging configurations were tested: with or without smoothing, and control points on or surrounding the entire mesh. Based on the results, it is recommended to use surrounding control points and smoothing. The mean node to surface distance between the deformed and target geometries was 0.3 mm ± 1.1. Most elements met the mesh quality criteria (95%) after deformation, without interference at the articular facets. The method’s novelty lies in the deformation of the entire spine at once, as opposed to deforming each vertebra separately, with surrounding control points and smoothing. This enables the transformation of reference vertebrae and soft tissues to obtain complete and personalized FEMs of the spine with minimal post-processing to optimize the mesh. Biomechanics.
机译:迄今为止,开发脊椎的几何个性化和详细的实体有限元模型仍然是一个挑战,特别是由于多个关节和复杂的几何形状。为了解决这个问题,开发了一种基于自由形式变形技术(克里金法)的方法,将脊柱(包括椎间盘和韧带)的详细参考有限元网格变形为患者特定的10岁和82岁无症状的几何形状刺。测试了不同的克里金法配置:是否进行平滑处理以及整个网格上或周围的控制点。根据结果​​,建议使用周围的控制点和平滑处理。变形和目标几何形状之间的平均节点到表面的距离为0.3 mm±1.1。变形后,大多数元素均满足网格质量标准(95%),而对关节面没有干扰。该方法的新颖之处在于可以一次使整个脊柱变形,而不是分别使每个椎骨变形,并具有周围的控制点和平滑度。这使参考椎骨和软组织的转换能够获得脊柱的完整且个性化的FEM,而只需最少的后处理即可优化网格。生物力学。

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