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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Nonlinear Inversion of Ultrasonic Dispersion Curves for Cortical Bone Thickness and Elastic Velocities
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Nonlinear Inversion of Ultrasonic Dispersion Curves for Cortical Bone Thickness and Elastic Velocities

机译:皮质骨厚度和弹性速度超声波色散曲线的非线性反转

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In this study, a nonlinear grid-search inversion has been developed to estimate the thickness and elastic velocities of long cortical bones, which are important determinants of bone strength, from axially-transmitted ultrasonic data. The inversion scheme is formulated in the dispersive frequency-phase velocity domain to recover bone properties. The method uses ultrasonic guided waves to retrieve overlying soft tissue thickness, cortical thickness, compressional, and shear-wave velocities of the cortex. The inversion strategy requires systematic examination of a large set of trial dispersion-curve solutions within a pre-defined model space to match the data with minimum cost in a least-squares sense. The theoretical dispersion curves required to solve the inverse problem are computed for bilayered bone models using a semi-analytical finite-element method. The feasibility of the proposed approach was demonstrated by the numerically simulated data for a 1 mm soft tissue-5 mm bone bilayer and ex-vivo data from a bovine femur plate with an overlying 2 mm-thick soft-tissue mimic. The bootstrap method was employed to evaluate the inversion uncertainty and stability. Our results have shown that the cortical thickness and wave speeds could be recovered with fair accuracy.
机译:在本研究中,已经开发出非线性网格搜索反演来估计来自轴向传输的超声数据的长皮质骨骼的厚度和弹性速度,这是骨强度的重要决定因素。反演方案被配制在分散频率相速度域中以回收骨骼性质。该方法使用超声波引导波来检索皮质的覆盖软组织厚度,皮质厚度,压缩和剪切波速度。反转策略需要系统地检查预定义的模型空间内的大量试用曲线解决方案,以将数据与最小正方形感觉中的最小成本匹配。使用半分析有限元方法计算求解逆问题所需的理论分散曲线。通过从牛股骨板的1mm软组织-5mm骨双层和前体内数据的数值模拟数据证明了所提出的方法的可行性,其具有覆盖的2mm厚的软组织模拟。采用引导方法来评估反演的不确定性和稳定性。我们的结果表明,可以通过公平准确地恢复皮质厚度和波浪速度。

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