论文标题

预压力弹性板和试管中的引导波:应用于薄壁软材料的超声弹性图

Guided waves in pre-stressed hyperelastic plates and tubes: Application to the ultrasound elastography of thin-walled soft materials

论文作者

Li, Guo-Yang, He, Qiong, Mangan, Robert, Xu, Guoqiang, Mo, Chi, Luo, Jianwen, Destrade, Michel, Cao, Yanping

论文摘要

体内测量薄壁软组织(例如二尖瓣,动脉和膀胱)的机械性能以及在服务中薄壁的人造软生物材料的原位机械表征是巨大的挑战,并且难以通过常用的测试方法来解决。在这里,我们研究了由浸入的预压板和试管中聚焦的声学辐射产生的引导波的性质,并表明它们可以应对这一挑战。为此,我们在有限变形理论和(ii)有限元模拟中基于增量波运动的理论分析(i)。我们的分析导致了一种基于超声弹力图的新方法,以非损害和非侵入性方式对预压力薄壁软组织和人造软材料的弹性特性进行图像。为了验证理论和数值溶液并证明了相应方法在实际测量中的有用性,我们使用配备有L10-5传感器的Verasonics V1系统对浸入水中的聚乙烯基醇冷冻凝胶幻象进行了(III)实验。最后,已经讨论了该方法的潜在临床应用。

In vivo measurement of the mechanical properties of thin-walled soft tissues (e.g., mitral valve, artery and bladder) and in situ mechanical characterization of thin-walled artificial soft biomaterials in service are of great challenge and difficult to address via commonly used testing methods. Here we investigate the properties of guided waves generated by focused acoustic radiation force in immersed pre-stressed plates and tubes, and show that they can address this challenge. To this end, we carry out both (i) a theoretical analysis based on incremental wave motion in finite deformation theory and (ii) finite element simulations. Our analysis leads to a novel method based on the ultrasound elastography to image the elastic properties of pre-stressed thin-walled soft tissues and artificial soft materials in a non-destructive and non-invasive manner. To validate the theoretical and numerical solutions and demonstrate the usefulness of the corresponding method in practical measurements, we perform (iii) experiments on polyvinyl alcohol cryogel phantoms immersed in water, using the Verasonics V1 System equipped with a L10-5 transducer. Finally, potential clinical applications of the method have been discussed.

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