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首页> 外文期刊>The Open Orthopaedics Journal >Relationship Between Mechanical Properties and Bone Mineral Density of Human Femoral Bone Retrieved from Patients with Osteoarthritis
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Relationship Between Mechanical Properties and Bone Mineral Density of Human Femoral Bone Retrieved from Patients with Osteoarthritis

机译:骨关节炎患者取回的人股骨的力学性能与骨矿物质密度的关系

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The objective of this study was to analyse retrieved human femoral bone samples using three different testmethods, to elucidate the relationship between bone mineral density and mechanical properties. Human femoral headswere retrieved from 22 donors undergoing primary total hip replacement due to hip osteoarthritis and stored for amaximum of 24 hours postoperatively at + 6 °C to 8 °C.Analysis revealed an average structural modulus of 232±130 N/mm2 and ultimate compression strength of 6.1±3.3 N/mm2 with high standard deviations. Bone mineral densities of 385±133 mg/cm2 and 353±172 mg/cm3 were measured using thedual energy X-ray absorptiometry (DXA) and quantitative computed tomography (QCT), respectively. Ashing resulted in a bone mineral density of 323±97 mg/cm3. In particular, significant linear correlations were found between DXA and ashing with r = 0.89 (p < 0.01, n = 22) and between structural modulus and ashing with r = 0.76 (p < 0.01, n = 22).Thus, we demonstrated a significant relationship between mechanical properties and bone density. The correlations found can help to determine the mechanical load capacity of individual patients undergoing surgical treatments by means of noninvasive bone density measurements.
机译:这项研究的目的是使用三种不同的测试方法分析取回的人类股骨骨样品,以阐明骨矿物质密度与力学性能之间的关系。从22名因髋骨关节炎进行全髋置换的供体中取出人股骨头,术后在+ 6°C至8°C下最多保存24小时,分析显示平均结构模量为232±130 N / mm2,最终受压强度为6.1±3.3 N / mm2,标准偏差较高。分别使用双能X射线吸收法(DXA)和定量计算机断层扫描(QCT)测量了385±133 mg / cm2和353±172 mg / cm3的骨矿物质密度。灰化导致骨矿物质密度为323±97 mg / cm3。特别是在DXA与灰化之间,r = 0.89(p <0.01,n = 22)和结构模量与灰化之间,r = 0.76(p <0.01,n = 22)之间存在显着的线性相关性。力学性能与骨密度之间的显着关系。所发现的相关性可以帮助通过无创骨密度测量来确定接受手术治疗的各个患者的机械负荷能力。

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