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Determination of mechanical stiffness of bone by pQCT measurements: correlation with non-destructive mechanical four-point bending test data

机译:通过pQCT测量确定骨骼的机械刚度:与无损机械四点弯曲测试数据的相关性

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摘要

Mechanical tests of bone provide valuable information about material and structural properties important for understanding bone pathology in both clinical and research settings, but no previous studies have produced applicable non-invasive, quantitative estimates of bending stiffness. The goal of this study was to evaluate the effectiveness of using peripheral quantitative computed tomography (pQCT) data to accurately compute the bending stiffness of bone. Normal rabbit humeri (N = 8) were scanned Lit their mid-diaphyses using pQCT. The average bone mineral densities and the cross-sectional moments of inertia were computed from the pQCT cross-sections. Bending stiffness was determined as a function of the elastic modulus of compact bone (based on the local bone mineral density), cross-sectional moment of inertia, and simulated quasistatic strain rate. The actual bending stiffness of the bones was determined using four-point bending tests. Comparison of the bending stiffness estimated from the pQCT data and the mechanical bending stiffness revealed excellent correlation (R-2 = 0.96). The bending stiffness from the pQCT data was on average 103% of that obtained from the four-point bending tests. The results indicate that pQCT data can be used to accurately determine the bending stiffness of normal bone. Possible applications include temporal quantification of fracture healing and risk management of osteoporosis or other bone pathologies. (C) 2003 Elsevier Ltd. All rights reserved.
机译:骨骼的力学测试提供了关于材料和结构特性的有价值的信息,这些信息对于理解临床和研究环境中的骨病理学都很重要,但是以前的研究都没有得出可应用的非侵入性抗弯刚度的定量估计。这项研究的目的是评估使用外围定量计算机断层扫描(pQCT)数据准确计算骨骼的弯曲刚度的有效性。使用pQCT扫描正常兔肱骨(N = 8)点燃其中dia骨。从pQCT横截面计算平均骨矿物质密度和横截面惯性矩。弯曲刚度确定为紧实骨的弹性模量(基于局部骨矿物质密度),横截面惯性矩和模拟准静态应变率的函数。使用四点弯曲测试确定骨骼的实际弯曲刚度。根据pQCT数据估算的弯曲刚度与机械弯曲刚度的比较显示出极好的相关性(R-2 = 0.96)。来自pQCT数据的弯曲刚度平均为四点弯曲测试所获得的弯曲刚度的103%。结果表明,pQCT数据可用于准确确定正常骨骼的弯曲刚度。可能的应用包括骨折愈合的时间定量和骨质疏松症或其他骨病的风险管理。 (C)2003 Elsevier Ltd.保留所有权利。

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