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A wavefront intersection algorithm for time-of-flight non-contact diffuse optical tomography of fluorescent inclusions in thick turbid media

机译:厚浊介质中荧光夹杂物的飞行时间非接触式漫射光学断层扫描的波前交叉算法

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In previous work, we have introduced a numerical constant fraction discrimination (NCFD) technique for processing time-resolved optical signals. It allows to extract, in a stable manner, the arrival time of early photons emitted by a fluorescent inclusion embedded in a scattering medium. We showed experimentally that these arrival times correlate quasi-linearly with inclusion depth. We now exploit this arrival time vs depth relationship for inferring the inclusion position by way of a time of flight algorithm. The algorithm uses the relative arrival times measured at several detector positions around the scattering medium with respect to a reference detector position. The latter is chosen as that detector position for which the arrival time is shortest. Our approach provides accurate inclusion localization, showing the potential of direct time-of-flight fluorescence diffuse optical tomography.
机译:在以前的工作中,我们引入了用于处理时间分辨光信号的数值恒定分数鉴别(NCFD)技术。它允许以稳定的方式提取通过嵌入散射介质中的荧光夹杂物发出的早期光子的到达时间。我们通过实验显示这些到达时间随着夹杂物深度与拟线性线性相关。我们现在利用这个到达时间Vs深度关系,以通过飞行算法推断夹杂物位置。该算法使用在散射介质周围的几个检测器位置测量的相对到达时间,相对于参考探测器位置。后者被选择为该探测器位置,到达时间最短。我们的方法提供了准确的包含本地化,显示出直接飞行时间荧光漫射光学断层扫描的潜力。

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