首页> 外文会议>Conference on Optical Elastography and Tissue Biomechanics III >Experimental classification of surface waves in optical coherence elastography
【24h】

Experimental classification of surface waves in optical coherence elastography

机译:光相干弹性术中表面波的实验分类

获取原文

摘要

Various types of waves are produced when a harmonic force is applied to a semi-infinite half space elastic medium. In particular, surface waves are perturbations with transverse and longitudinal components of displacement that propagate in the boundary region at the surface of the elastic solid. Shear wave speed estimation is the standard for characterizing elastic properties of tissue in elastography; however, the penetration depth of Optical Coherence Tomography (OCT) is typically measured in millimeters constraining the measurement region of interest to be near the surface. Plane harmonic Rayleigh waves propagate in solid-vacuum interfaces while Scholte waves exist in solid-fluid interfaces. Theoretically, for an elastic solid with a Poisson's ratio close to 0.5, the ratio of the Rayleigh to shear wave speed is 95%, and 84% for the Scholte to shear wave. Our study demonstrates the evidence of Rayleigh waves propagating in the solid-air boundary of tissue-mimicking elastic phantoms. Sinusoidal tone-bursts of 400Hz and 1000 Hz were excited over the phantom by using a piezoelectric actuator. The wave propagation was detected with a phase-sensitive OCT system, and its speed was measured by tracking the most prominent peak of the tone in time and space. Similarly, this same experiment was repeated with a water interface. In order to obtain the shear wave speed in the material, mechanical compression tests were conducted in samples of the same phantom. A 93.9% Rayleigh-shear and 82.4% Scholte-Shear speed ratio were measured during experiments which are in agreement with theoretical results.
机译:当谐波力施加到半无限半空间弹性介质时产生各种类型的波。特别地,表面波是具有在弹性固体表面的边界区域中传播的位移的横向和纵向分量的扰动。剪切波速估计是用于表征弹性造影中组织弹性性质的标准;然而,光学相干断层扫描(OCT)的渗透深度通常以毫米约束感兴趣的测量区域在表面附近测量。平面谐波瑞利波在固体真空界面中传播,而学者波浪存在于固体流体接口中。从理论上,对于泊松比的弹性固体接近0.5,Rayleigh与剪切波速的比率为95%,剪切波的比例为95%,84%。我们的研究表明,在组织模仿弹性模拟的固态边界中传播的瑞利波的证据。通过使用压电执行器,在幻像上激发400Hz和1000Hz的正弦色调突发。通过相位敏感的OCT系统检测波传播,通过跟踪时间和空间中最突出的音调峰值来测量其速度。类似地,用水界面重复这种相同的实验。为了获得材料中的剪切波速度,在相同模体的样品中进行机械压缩试验。在与理论结果一致的实验期间测量了93.9%的瑞利剪切和82.4%的学者剪切速度比。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号