IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Jan;69(1):147-155. doi: 10.1109/TUFFC.2021.3112621. Epub 2021 Dec 31.
Noninvasive characterization of cortical long bones using axial transmission ultrasound is a promising diagnostic technology for osteoporotic cortical thinning assessment. However, the soft tissue-bone coupling effect remains to be a challenge and an ambiguity especially in vivo. The influence of the overlying soft tissue layer with a varying thickness on the propagation of ultrasonic guided waves in cortical bone is studied experimentally and theoretically in this article. The wave propagation is characterized based on waveform comparison, spectral density and decomposition, dispersion energy imaging, and particle displacement analysis. Good agreement between experimental observations with theoretical predictions by semi-analytical finite element simulations is observed. The sensitivity of propagation characteristics in response to the coupled tissue thickness is elucidated. As the thickness of the loading soft tissue grows, the guided wave signals exhibit greater attenuated amplitude and delayed arrival time; more complex dispersive wave patterns emerge; and the modal number and density increase. The research findings advance the fundamental comprehension of ultrasonic-guided-wave excitation and interaction in long bones and facilitate further technical development and clinical utility of quantitative guided-wave ultrasonography in routine healthcare services as a nondestructive imaging modality for cortical bone examination.
利用轴向透射超声对皮质骨进行无创特征描述是一种很有前途的骨质疏松性皮质变薄评估诊断技术。然而,软组织-骨耦合效应仍然是一个挑战,特别是在活体中存在歧义。本文从实验和理论两方面研究了具有不同厚度的覆盖软组织层对皮质骨中超声导波传播的影响。基于波形比较、频谱密度和分解、频散能量成像和质点位移分析对波传播特性进行了描述。半解析有限元模拟的理论预测与实验观察结果吻合较好。阐明了传播特性对耦合组织厚度的敏感性。随着加载软组织厚度的增加,导波信号的幅度衰减更大,到达时间延迟;出现更为复杂的频散波模式;模态数量和密度增加。研究结果推进了对长骨中超声导波激励和相互作用的基础理解,有助于进一步开发和临床应用定量导波超声技术,作为皮质骨检查的一种无损成像方式常规医疗服务。