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利用轴向传输低频超声导波反演评估皮质骨板性能。

Cortical bone plate properties assessment using inversion of axially transmitted low frequency ultrasonic guided waves.

机构信息

PULETS, École de Technologie Supérieure, Montréal, Québec, Canada.

MSME, CNRS, UMR 8208, Université Paris Est Créteil, Université Gustave Eiffel, F-94010 Créteil, France.

出版信息

J Acoust Soc Am. 2024 Aug 1;156(2):954-967. doi: 10.1121/10.0028173.

Abstract

Over the past few decades, early osteoporosis detection using ultrasonic bone quality evaluation has gained prominence. Specifically, various studies focused on axial transmission using ultrasonic guided waves and have highlighted this technique's sensitivity to intrinsic properties of long cortical bones. This work aims to demonstrate the potential of low-frequency ultrasonic guided waves to infer the properties of the bone inside which they are propagating. A proprietary ultrasonic transducer, tailored to transmit ultrasonic guided waves under 500 kHz, was used for the data collection. The gathered data underwent two-dimensional fast Fourier transform processing to extract experimental dispersion curves. The proposed inversion scheme compares experimental dispersion curves with simulated dispersion curves calculated through the semi-analytical iso-geometric analysis (SAIGA) method. The numerical model integrates a bone phantom plate coupled with a soft tissue layer on its top surface, mimicking the experimental bone phantom plates. Subsequently, the mechanical properties of the bone phantom plates were estimated by reducing the misfit between the experimental and simulated dispersion curves. This inversion leaned heavily on the dispersive trajectories and amplitudes of ultrasonic guided wave modes. Results indicate a marginal discrepancy under 5% between the mechanical properties ascertained using the SAIGA-based inversion and those measured using bulk wave pulse-echo measurements.

摘要

在过去的几十年中,使用超声骨质量评估进行早期骨质疏松症检测已经引起了关注。具体来说,各种研究都集中在使用超声导波的轴向传输上,并强调了这种技术对长皮质骨固有特性的敏感性。本工作旨在展示低频超声导波推断其传播内部骨骼特性的潜力。使用专门设计的超声换能器在 500kHz 以下传输超声导波来收集数据。收集的数据经过二维快速傅里叶变换处理,以提取实验色散曲线。所提出的反演方案将实验色散曲线与通过半解析等几何分析 (SAIGA) 方法计算的模拟色散曲线进行比较。数值模型集成了一个骨体模板,并在其顶部表面耦合一层软组织,模拟实验骨体模板。随后,通过减小实验和模拟色散曲线之间的不匹配来估计骨体模板的力学性能。这种反演严重依赖于超声导波模式的色散轨迹和幅度。结果表明,基于 SAIGA 的反演确定的力学性能与使用体波脉冲回波测量确定的力学性能之间存在 5%的微小差异。

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