首页> 外文会议>Saratov Meeting on Coherent Optics of Ordered and Random Media >Elastic property estimation using Ultrasound Assisted Optical Elastography through Remote Palpation-A simulation study
【24h】

Elastic property estimation using Ultrasound Assisted Optical Elastography through Remote Palpation-A simulation study

机译:通过远程触诊使用超声辅助光学弹性术的弹性物质估计 - 一种模拟研究

获取原文

摘要

We propose an effective elastography technique in which an acoustic radiation force is used for remote palpation to generate localized tissue displacements, which are directly correlated to localized variations of tissue stiffness and are measured using a light probe in the same direction of ultrasound propagation. The experimental geometry has provision to input light beam along the ultrasound propagation direction, and hence it can be prealigned to ensure proper interception of the focal region by the light beam. Tissue-mimicking phantoms with homogeneous and isotropic mechanical properties of normal and malignant breast tissue are considered for the study. Each phantom is insonified by a focusing ultrasound transducer (1 MHz). The focal volume of the transducer and the ultrasound radiation force in the region are estimated through solving acoustic wave propagation through medium assuming average acoustic properties. The forward elastography problem is solved for the region of insonification assuming the Lame's parameters and Poisson's ratio, under Dirichlet boundary conditions which gives a distribution of displacement vectors. The direction of displacement, though presented spatial variation, is predominantly towards the ultrasound propagation direction. Using Monte Carlo (MC) simulation we have traced the photons through the phantom and collected the photons arriving at the detector on the boundary of the object in the direction of ultrasound. The intensity correlations are then computed from detected photons. The intensity correlation function computed through MC simulation showed a modulation whose strength is found to be proportional to the amplitude of displacement and inversely related to the storage (elastic) modulus. It is observed that when the storage modulus in the focal region is increased the computed displacement magnitude, as indicated by the depth of modulation in the intensity autocorrelation, decreased and the trend is approximately exponential.
机译:我们提出了一种有效的弹性摄影技术,其中声辐射力用于远程触觉,以产生局部化组织位移,其与组织刚度的局部化变化直接相关,并且在同一方向的超声波传播方向上使用光探针测量。实验几何形状具有沿超声波传播方向输入光束,因此可以预先实现以确保光束正确拦截焦点区域。考虑研究具有正常和恶性乳房组织的均匀和各向同性机械性能的组织模拟体模。每个幻影通过聚焦超声换能器(1 MHz)阐述。通过求解通过介质假设平均声学特性,通过求解声波传播来估计该区域中的换能器和超声辐射力的焦距。对于跛脚的参数和泊松比在散裂载体分布的Dirichlet边界条件下,前向弹性造影问题解决了智慧参数和泊松比的区域。虽然呈现的空间变化,但位移方向主要是朝向超声波传播方向。使用Monte Carlo(MC)模拟我们已经通过幻像追踪光子,并将光子收集在超声的方向上沿着物体的边界处到达检测器。然后从检测到的光子计算强度相关性。通过MC仿真计算的强度相关函数显示了一种调制,其强度被发现与位移幅度成比例并与存储(弹性)模量反向相关。观察到,当焦点区域中的存储模量增加计算的位移幅度时,如强度自相关的调制深度所示,减少并且趋势大致是指数的。

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