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In vitro speed of sound measurement at intact human femur specimens.

机译:完整人类股骨标本的体外声音测量速度。

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Quantitative ultrasound has been recognized as a useful tool for fracture risk prediction. Current measurement techniques are limited to peripheral skeletal sites. Our objective was to demonstrate the in vitro feasibility of ultrasonic velocity measurements on human proximal femur and to investigate the relationship between velocity and bone mineral density (BMD). Sound velocity images were computed from 2-D scans performed on 38 excised human femurs in transmission at 0.5 MHz. Different regions-of-interest were investigated. Dual x-ray absorptiometry scans have been achieved for BMD measurements in site-matched regions. Our study demonstrates the feasibility of ultrasonic velocity measurements at the hip with reasonable precision (coefficient of variation of 0.3%). The best prediction of BMD was reached in the intertrochanter region (r(2) = 0.91, p < 10(-4)), with a residual error of 0.06 g/cm(2) (10%). Because BMD measured at the femur is the best predictor of hip fracture risk, the highly significant correlation and small residual error found in this study suggest that speed of sound measurement at the femur might be a good candidate for hip fracture risk prediction. (E-mail: ).
机译:定量超声已被认为是预测骨折风险的有用工具。当前的测量技术仅限于外周骨骼部位。我们的目的是证明对人体股骨近端进行超声速度测量的体外可行性,并研究速度与骨矿物质密度(BMD)之间的关系。声速图像是通过以0.5 MHz的透射率对38个切除的人股骨进行的二维扫描计算得出的。研究了不同的感兴趣区域。在部位匹配区域中的BMD测量已经实现了双X射线吸收仪扫描。我们的研究表明,以合理的精度(变异系数为0.3%)在髋部进行超声速度测量的可行性。 BMD的最佳预测在转子间区域达到(r(2)= 0.91,p <10(-4)),残留误差为0.06 g / cm(2)(10%)。由于在股骨处测得的BMD是预测髋部骨折风险的最佳指标,因此本研究中发现的高度相关性和较小的残留误差表明,在股骨处进行声音测量的速度可能是预测髋部骨折风险的良好候选者。 (电子邮件:)。

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