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Explicit finite element analysis to predict impact damage response of osteoporosis hip bone

机译:显式有限元分析预测骨质疏松症髋骨的冲击损伤反应

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Hip fractures due to sideways falls are a worldwide health problem, especially amongst elderly people. The force experienced by the proximal femur during a fall, and therefore hip fracture, is significantly dependent on density, thickness and stiffness of the body during impact. The process of fracture and healing can only be understood in terms of the structure and composition of the bone and also its mechanical properties. Bone fracture analysis investigates the prediction of various failure mechanisms under different loading conditions. An accurate explicit finite element method will assist scientists and researchers to predict the impact damage response of bone structures. In this paper, the effect of low velocity impact on the osteoporotic hip in ageing people will be studied in LSDYNA. The first part aims to create a three-dimensional (3D) reconstruction and registration of semi-transparent computed tomography scan image data using Simpleware software. In the second part, the effect of cortical thickness and impact velocity on the energy absorption of the hip during a fall will be investigated on a 3D model using the latest techniques. The critical impulse loading of the hip will be the benchmark to improve the design of safety instruments and consequently the well-being of elderly people.
机译:侧身跌倒引起的髋部骨折是一个全球性的健康问题,尤其是在老年人中。跌倒过程中股骨近端承受的力,进而导致髋部骨折,在很大程度上取决于撞击过程中身体的密度,厚度和刚度。骨折和愈合的过程只能从骨头的结构和组成以及其机械特性来理解。骨骨折分析研究了在不同载荷条件下各种破坏机理的预测。精确的显式有限元方法将帮助科学家和研究人员预测骨骼结构的撞击损伤响应。本文将在LSDYNA中研究低速冲击对老年人骨质疏松症的影响。第一部分旨在使用Simpleware软件创建三维(3D)重建和半透明计算机断层扫描扫描图像数据配准。在第二部分中,将使用最新技术在3D模型上研究跌倒过程中皮质厚度和撞击速度对髋部能量吸收的影响。髋部的临界脉冲负荷将成为改善安全工具的设计,从而改善老年人的健康的基准。

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