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Time-domain reflectance diffuse optical tomography with Mellin-Laplace transform for experimental detection and depth localization of a single absorbing inclusion

机译:带有Mellin-Laplace变换的时域反射漫射光学层析成像技术用于单个吸收夹杂物的实验检测和深度定位

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摘要

We show how to apply the Mellin-Laplace transform to process time-resolved reflectance measurements for diffuse optical tomography. We illustrate this method on simulated signals incorporating the main sources of experimental noise and suggest how to fine-tune the method in order to detect the deepest absorbing inclusions and optimize their localization in depth, depending on the dynamic range of the measurement. To finish, we apply this method to measurements acquired with a setup including a femtosecond laser, photomultipliers and a time-correlated single photon counting board. Simulations and experiments are illustrated for a probe featuring the interfiber distance of 1.5 cm and show the potential of time-resolved techniques for imaging absorption contrast in depth with this geometry.
机译:我们展示了如何将Mellin-Laplace变换应用于漫反射光学层析成像的时间分辨反射率测量。我们在结合了实验噪声主要来源的模拟信号上说明了该方法,并建议如何微调该方法,以便根据测量的动态范围来检测最深的吸收夹杂物并优化其深度定位。最后,我们将此方法应用于通过飞秒激光器,光电倍增管和与时间相关的单光子计数板等设置进行的测量。举例说明了一根探针的纤维间距离为1.5厘米,并进行了仿真和实验,结果表明了利用时间分辨技术对这种几何形状的深度吸收对比成像的潜力。

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