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Three dimensional time reversal optical tomography

机译:三维时间反转光学层析成像

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Time reversal optical tomography (TROT) approach is used to detect and locate absorptive targets embedded in a highly scattering turbid medium to assess its potential in breast cancer detection. TROT experimental arrangement uses multi-source probing and multi-detector signal acquisition and Multiple-Signal-Classification (MUSIC) algorithm for target location retrieval. Light transport from multiple sources through the intervening medium with embedded targets to the detectors is represented by a response matrix constructed using experimental data. A TR matrix is formed by multiplying the response matrix by its transpose. The eigenvectors with leading non-zero eigenvalues of the TR matrix correspond to embedded objects.rnThe approach was used to: (a) obtain the location and spatial resolution of an absorptive target as a function of its axial position between the source and detector planes; and (b) study variation in spatial resolution of two targets at the same axial position but different lateral positions. The target(s) were glass sphere(s) of diameter ~9 mm filled with ink (absorber) embedded in a 60 mm-thick slab of Intralipid-20% suspension in water with an absorption coefficient μ_a ~ 0.003 mm"1 and a transport mean free path l_t ~ 1 mm at 790 nm, which emulate the average values of those parameters for human breast tissue. The spatial resolution and accuracy of target location depended on axial position, and target contrast relative to the background. Both the targets could be resolved and located even when they were only 4-mm apart. The TROT approach is fast, accurate, and has the potential to be useful in breast cancer detection and localization.
机译:时间反向光学层析成像(TROT)方法用于检测和定位嵌入高散射混浊介质中的吸收性靶标,以评估其在乳腺癌检测中的潜力。 TROT实验安排使用多源探测和多探测器信号采集以及多信号分类(MUSIC)算法进行目标位置检索。通过使用实验数据构建的响应矩阵表示光从多个源通过具有嵌入目标的居间介质传输到检测器的过程。通过将响应矩阵乘以其转置来形成TR矩阵。 TR矩阵的特征值前导为非零的特征向量对应于嵌入的对象。rn该方法用于:(a)根据其在源平面和检测器平面之间的轴向位置来获得吸收目标的位置和空间分辨率; (b)研究在相同轴向位置但横向位置不同的两个目标的空间分辨率变化。目标是直径约9 mm的玻璃球,填充有墨水(吸收剂),该油墨嵌入60毫米厚的Intralipid-20%悬浮于水中的平板中,吸收系数μ_a〜0.003 mm“ 1,在790 nm处传输平均自由程l_t〜1 mm,模拟人乳腺组织的这些参数的平均值,目标位置的空间分辨率和精度取决于轴向位置和目标相对于背景的对比度,两个目标都可以TROT方法快速,准确,并且有可能在乳腺癌的检测和定位中发挥作用。

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