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Ultrasonic measurement of the calcaneus: investigation of some error sources, and correlation with femoral strength

机译:钙盘的超声波测量:对一些误差来源的调查,与股骨强度的相关性

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Ultrasonic signal velocity, phase velocity and broadband ultrasonic attenuation (BUA) have been measured in 64 calcanae in vitro. Femoral strength (FS) was determined for specimens from the same cadavers in a mechanical test simulating a fall. Femoral bone mineral density (BMD) was measured using X-ray absorptiometry. Signal velocities were highly technique-dependent, and were significantly greater than phase velocities. Negative dispersion was observed. In a subset (n=23) of the calcanae, there were highly significant reductions in velocity and BUA when the cortical shell was removed. BMD was the best predictor of FS (r/sup 2/=0.88). The best ultrasonic predictor was BUA (r/sup 2/=0.47). Multiple regression analysis indicated that ultrasonic parameters did not significantly improve the ability of BMD to predict FS. The results suggest that ultrasound has only a limited ability to predict hip fracture strength. However, investigation of error sources and new measurement techniques can be expected to lead to improvements in the clinical performance of bone ultrasound, as well as advancing one's understanding of the underlying interaction between bone and ultrasound.
机译:超声信号速度,相速度和宽带超声衰减(Bua)在体外64种Calcanae测量。在模拟落下的机械测试中,测定来自相同尸体的标本的股骨强度(FS)。使用X射线吸收测量测量股骨骨密度(BMD)。信号速度依赖于高度技术,并且显着大于相速度。观察到阴性分散体。在所述计算的子集(n = 23)中,当除去皮质壳时,速度和BUA的速度显着降低。 BMD是FS的最佳预测因子(R / SUP 2 / = 0.88)。最好的超声波预测器是Bua(r / sup 2 / = 0.47)。多元回归分析表明,超声参数没有显着提高BMD预测FS的能力。结果表明,超声波只能预测髋部断裂强度的能力有限。然而,可以预期对误差源和新测量技术的调查导致骨质超声的临床表现的改善,以及推进骨骼和超声波之间的潜在相互作用的理解。

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