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Development of a multi-scale finite element model of the osteoporotic lumbar vertebral body for the investigation of apparent level vertebra mechanics and micro-level trabecular mechanics.

机译:骨质疏松性腰椎椎体的多尺度有限元模型的开发,用于研究视在水平椎骨力学和微水平小梁力学。

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摘要

Osteoporotic spinal fractures are a major concern in ageing Western societies. This study develops a multi-scale finite element (FE) model of the osteoporotic lumbar vertebral body to study the mechanics of vertebral compression fracture at both the apparent (whole vertebral body) and micro-structural (internal trabecular bone core)levels. Model predictions were verified against experimental data, and found to provide a reasonably good representation of the mechanics of the osteoporotic vertebral body. This novel modelling methodology will allow detailed investigation of how trabecular bone loss in osteoporosis affects vertebral stiffness and strength in the lumbar spine.
机译:骨质疏松性脊柱骨折是西方社会老龄化的主要问题。本研究建立了骨质疏松性腰椎椎体的多尺度有限元(FE)模型,以研究表观(整个椎体)和微结构(小梁内部骨)水平的椎体压缩性骨折的力学。模型预测与实验数据进行了验证,发现可以很好地代表骨质疏松椎体的力学。这种新颖的建模方法将允许详细研究骨质疏松症中的小梁骨丢失如何影响腰椎的椎骨硬度和强度。

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