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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >A novel adaptive algorithm for 3D finite element analysis to model extracortical bone growth
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A novel adaptive algorithm for 3D finite element analysis to model extracortical bone growth

机译:一种新型的自适应3D有限元分析算法,用于模拟皮层外骨生长

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摘要

Extracortical bone growth with osseointegration of bone onto the shaft of massive bone tumour implants is an important clinical outcome for long-term implant survival. A new computational algorithm combining geometrical shape changes and bone adaptation in 3D Finite Element simulations has been developed, using a soft tissue envelope mesh, a novel concept of osteoconnectivity, and bone remodelling theory. The effects of varying the initial tissue density, spatial influence function and time step were investigated. The methodology demonstrated good correspondence to radiological results for a segmental prosthesis.
机译:皮质骨外整合以及骨骨整合到大块骨肿瘤植入物的杆身上,是长期植入物存活的重要临床结果。使用软组织包络网格,骨连接性的新概念和骨重塑理论,开发了一种在3D有限元模拟中结合几何形状变化和骨骼适应性的新计算算法。研究了改变初始组织密度,空间影响函数和时间步长的影响。该方法论与分段假体的放射学结果具有良好的对应性。

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