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A compact fiber‐optic probe‐based singlet oxygen luminescence detection system

机译:基于紧凑型光纤探头的单重态氧发光检测系统

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摘要

This paper presents a novel compact fiberoptic based singlet oxygen near‐infrared luminescence probe coupled to an InGaAs/InP single photon avalanche diode (SPAD) detector. Patterned time gating of the single‐photon detector is used to limit unwanted dark counts and eliminate the strong photosensitizer luminescence background. Singlet oxygen luminescence detection at 1270 nm is confirmed through spectral filtering and lifetime fitting for Rose Bengal in water, and Photofrin in methanol as model photosensitizers. The overall performance, measured by the signal‐to‐noise ratio, improves by a factor of 50 over a previous system that used a fiberoptic‐coupled superconducting nanowire single‐photon detector. The effect of adding light scattering to the photosensitizer is also examined as a first step towards applications in tissue in vivo.
机译:本文介绍了一种新颖的紧凑型基于光纤的单线态氧近红外发光探针,该探针与InGaAs / InP单光子雪崩二极管(SPAD)检测器耦合。单光子检测器的图案化时间门控用于限制不必要的暗计数并消除强光敏剂的发光背景。通过光谱过滤和寿命拟合确定了玫瑰红在水中在水中的单线态氧发光检测,并且对甲醇中的Photofrin作为模型光敏剂进行了寿命拟合。与以前使用光纤耦合超导纳米线单光子探测器的系统相比,通过信噪比衡量的整体性能提高了50倍。作为在体内组织中应用的第一步,还检查了向光敏剂添加光散射的效果。

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