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Time-resolved diffuse optical tomography using fast-gated single-photon avalanche diodes

机译:使用快速门控单光子雪崩二极管的时间分辨扩散光学层析成像

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摘要

We present the first experimental results of reflectance Diffuse Optical Tomography (DOT) performed with a fast-gated single-photon avalanche diode (SPAD) coupled to a time-correlated single-photon counting system. The Mellin-Laplace transform was employed to process time-resolved data. We compare the performances of the SPAD operated in the gated mode vs. the non-gated mode for the detection and localization of an absorbing inclusion deeply embedded in a turbid medium for 5 and 15 mm interfiber distances. We demonstrate that, for a given acquisition time, the gated mode enables the detection and better localization of deeper absorbing inclusions than the non-gated mode. These results obtained on phantoms demonstrate the efficacy of time-resolved DOT at small interfiber distances. By achieving depth sensitivity with limited acquisition times, the gated mode increases the relevance of reflectance DOT at small interfiber distance for clinical applications.
机译:我们介绍了与快速相关的单光子雪崩二极管(SPAD)耦合到时间相关的单光子计数系统执行的反射扩散光学层析成像(DOT)的第一个实验结果。使用Mellin-Laplace变换来处理时间分辨数据。我们比较了在门控模式和非门控模式下SPAD的性能,该方法可检测和定位深埋在浑浊介质中的吸收性夹杂物,其纤维间距离为5和15 mm。我们证明,对于给定的采集时间,与非门控模式相比,门控模式能够检测和更好地定位更深的吸收夹杂物。在幻影上获得的这些结果证明了在较小的纤维间距离下,时间分辨DOT的功效。通过以有限的采集时间实现深度灵敏度,选通模式可在较小的光纤间距离下提高反射DOT在临床应用中的相关性。

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