首页> 外文会议>Multimodal biomedical imaging VII >Time-reversal optical tomography: detecting and locating extended targets in a turbid medium
【24h】

Time-reversal optical tomography: detecting and locating extended targets in a turbid medium

机译:逆时光层析成像:在浑浊的介质中检测和定位扩展目标

获取原文
获取原文并翻译 | 示例

摘要

Time Reversal Optical Tomography (TROT) is developed to locate extended targets) in a highly scattering turbid medium, and estimate their optical strength and size. The approach uses Diffusion Approximation of Radiative Transfer Equation for light propagation along with Time Reversal (TR) Multiple Signal Classification (MUSIC) scheme for signal and noise subspaces for assessment of target location. A MUSIC pseudo spectrum is calculated using the eigenvectors of the TR matrix T, whose poles provide target locations. Based on the pseudo spectrum contours, retrieval of target size is modeled as an optimization problem, using a "local contour" method. The eigenvalues of T are related to optical strengths of targets. The efficacy of TROT to obtain location, size, and optical strength of one absorptive target, one scattering target, and two absorptive targets, all for different noise levels was tested using simulated data. Target locations were always accurately determined. Error in optical strength estimates was small even at 20% noise level. Target size and shape were more sensitive to noise. Results from simulated data demonstrate high potential for application of TROT in practical biomedical imaging applications.
机译:时间反转光学层析成像(TROT)的开发目的是在高度散射的浑浊介质中定位扩展目标,并估算其光学强度和大小。该方法将辐射传递方程的扩散近似用于光传播,并将时间反转(TR)多信号分类(MUSIC)方案用于信号和噪声子空间,以评估目标位置。使用TR矩阵T的特征向量计算MUSIC伪频谱,其极点提供目标位置。基于伪频谱轮廓,使用“局部轮廓”方法将目标大小的检索建模为优化问题。 T的特征值与目标的光学强度有关。使用模拟数据测试了TROT获得一个吸收性目标,一个散射性目标和两个吸收性目标的位置,大小和光学强度(对于所有噪声水平)的功效。目标位置始终准确确定。即使在20%的噪声水平下,光学强度估算的误差也很小。目标尺寸和形状对噪声更敏感。模拟数据的结果证明了TROT在实际生物医学成像应用中的巨大潜力。

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