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Detection of elastic guided waves using an axial transmission method: Performance comparison between PZT and cMUT technologies

机译:使用轴向传输方法检测弹性导波:PZT和cMUT技术之间的性能比较

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摘要

Following recent advances in medical ultrasound imaging modalities, almost all human tissues can currently be examined. However, there is one exception: the human skeleton. Recent results have shown that cortical bone behaves like an elastic waveguide [1] for this organ supporting the propagation of several guided modes, depending on the cortical waveguide thickness and elasticity, can propagate. This therefore offers a new opportunity perspectives to quantify quantitative assessment factors of fracture risk-related bone quality characteristics and thus to predict risk of fracture. The cMUT large frequency bandwidth compared to the PZT is expected to reach important improvements for cortical bone assessment. In a previous paper [2] the potential of cMUT technology to detect and measure elastic guided waves, using an axial transmission technique, was demonstrated. The work reported here is an extension of our previous developments and investigates more thoroughly the comparison between the cMUT and PZT technologies.
机译:随着医学超声成像方式的最新发展,目前几乎可以检查几乎所有人体组织。但是,有一个例外:人体骨骼。最近的结果表明,皮质骨的行为类似于弹性波导[1],该器官支持多种引导模式的传播,这取决于皮质波导的厚度和弹性。因此,这为量化与骨折风险相关的骨质量特征的定量评估因素,从而预测骨折风险提供了新的机会。与PZT相比,cMUT大频率带宽有望在皮质骨评估中获得重要改进。在以前的论文[2]中,展示了使用轴向传输技术的cMUT技术检测和测量弹性导波的潜力。此处报道的工作是对我们以前的开发的扩展,并更彻底地研究了cMUT和PZT技术之间的比较。

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