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Non-invasive Analysis of the Micro-structural and Biomechanical Properties of Trabecular Bone in Human Femoral Head

机译:人股头中小梁骨微结构和生物力学性质的非侵入性分析

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This study investigates micro-structural and mechanical properties of trabecular bone in human femoral head with and without osteoporosis using a micro-CT and a finite element model. 15 cored trabecular bone specimens with 20 mm of diameter were obtained from femoral heads with osteoporosis resected for total hip arthroplasty, and 5 specimens were removed from femoral head of cadavers, which has no history of musculoskeletal diseases. A high-resolution micro-CT system was used to scan each specimen to obtain histomorphometry indexes. Based on the micro-images, a FE-model was created to determine mechanical property indexes. While the non-osteoporosis group had increases the trabecular thickness, the bone volume, the bone volume fraction, the degree of anisotropy and the trabecular number compared with those of osteoporotic group, the non-osteoporotic group showed decreases in trabecular separation and structure model index. Regarding the mechanical property indexes, the reaction force and the Young's modulus were lower in the osteoporotic group than in non-osteoporotic group. Our data shows salient deteriorations in trabecular micro-structural and mechanical properties in human femoral head with osteoporosis.
机译:本研究研究了使用微CT和有限元模型的人股头中的人股头中小梁骨的微结构和力学性能。 15芯片的骨质骨标本从股骨头获得20毫米的直径,骨质疏松症被切除总髋关节置换术,5个标本从牛犊中除去牛犊,其没有肌肉骨骼疾病的历史。使用高分辨率微型CT系统扫描每个样本以获得组织形态索引。基于微图像,创建了FE模型以确定机械性能指标。虽然非骨质疏松症组增加了与骨质疏松群体相比的小梁厚度,骨体积,骨体积分数,各向异性程度和小梁数,但非骨质疏松基团显示出小梁分离和结构模型指数下降。关于机械性能指标,骨质疏松群中的反作用力和杨氏模量低于非骨质疏松群体。我们的数据显示人股头中的小梁微结构和机械性能的显着劣化,骨质疏松症。

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