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Relationships Among Bone Morphological Parameters and Mechanical Properties of Cadaveric Human Vertebral Cancellous Bone

机译:尸体椎体椎体松质骨骨形态参数与力学性能的关系

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摘要

Mechanical properties and morphological features of the vertebral cancellous bone are related to resistance to fracture and capability of withstanding surgical treatments. In particular, vertebral strength is related to its elastic properties, whereas the ease of fluid motion, related to the success of incorporation orthopedic materials (eg, bone cement), is regulated by the hydraulic permeability (K). It has been shown that both elastic modulus and permeability of a material are affected by its morphology. The objective of this study was to establish relations between local values of K and the aggregate modulus (H), and parameters descriptive of the bone morphology. We hypothesized that multivariate statistical models, by including the contribution of several morphology parameters at once, would provide a strong correlation with K and H of the vertebral cancellous bone. Hence, μCT scans of human lumbar vertebra were used to determine a set of bone morphology descriptors. Subsequently, indentation tests on the bone samples were conducted to determine local values of K and H. Finally, a multivariate approach supported by principal component analysis was adopted to develop predictive statistical models of bone permeability and aggregate modulus as a function of bone morphology descriptors. It was found that linear combinations of bone volume fraction, trabecular thickness, trabecular spacing, structure model index, connectivity density, and degree of anisotropy provide a strong correlation ( R 2 ~?76%) with K and a weaker correlation ( R 2 ~?47%) with H. The results of this study can be exploited in computational mechanics frameworks for investigating the potential mechanical behavior of human vertebra and to develop strategies to treat or prevent pathological conditions such as osteoporosis, age‐related bone loss, and vertebral compression fractures. ? 2020 The Authors. JBMR Plus published by Wiley Periodicals, Inc. on behalf of American Society for Bone and Mineral Research.
机译:椎体松散骨的机械性能和形态学特征与耐抗骨折和耐受外科治疗的能力有关。特别地,椎体强度与其弹性性质有关,而易于流体运动,与掺入骨科材料(例如,骨水泥)的成功有关的流体运动是由液压渗透率(K)调节的。已经表明,材料的弹性模量和渗透性受其形态的影响。本研究的目的是建立k和聚集模量(h)的局部值之间的关系,以及描述骨形态的参数。我们假设多变量统计模型,通过立即包括几种形态参数的贡献,将提供与椎体松散骨的K和H的强烈相关性。因此,使用人腰椎的μct扫描来确定一组骨形态描述符。随后,进行骨样上的压痕试验以确定K和H的局部值。最后,采用了主要成分分析支持的多变量方法,以开发骨渗透率和聚集量模量的预测统计模型作为骨形态描述符。结果发现,骨体积分数,小梁厚度,小梁间距,结构模型指数,连接密度和各向异性程度的线性组合提供了k的强相关(R 2〜Δ76%)和较弱的相关性(R 2〜 ?47%)与H.该研究的结果可以在计算力学框架中利用,用于研究人椎骨的潜在力学行为,并制定治疗或预防骨质疏松症,年龄相关的骨丢失和椎体等病理条件的策略压缩骨折。 ? 2020作者。 JBMR Plus由Wiley Hearyicals,Inc。代表美国骨骼和矿物学研究。

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