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Sub-μs time resolution in wide-field time-correlated single photon counting microscopy obtained from the photon event phosphor decay.

机译:从光子事件磷光体衰变获得的广域时间相关单光子计数显微镜中的亚微秒时间分辨率。

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摘要

Fast frame rate complementary metal–oxide–semiconductor cameras in combination with photon counting image intensifiers can be used for microsecond resolution wide-field fluorescence lifetime imaging with single photon sensitivity, but the time resolution is limited by the camera exposure time. We show here how the image intensifier's P20 phosphor afterglow can be exploited for accurate timing of photon arrival well below the camera exposure time. By taking ratios of the intensity of the photon events in two subsequent frames, photon arrival times were determined with 300 ns precision with 18.5 μs frame exposure time (54 kHz camera frame rate). Decays of ruthenium and iridium-containing compounds with around 1 μs lifetimes were mapped with this technique, including in living HeLa cells, using excitation powers below 0.5 μW. Details of the implementation to calculate the arrival time from the photon event intensity ratio are discussed, and we speculate that by using an image intensifier with a faster phosphor decay to match a higher camera frame rate, photon arrival time measurements on the nanosecond time scale could be possible.
机译:快速帧频互补金属-氧化物-半导体相机与光子计数图像增强器结合可用于具有单光子灵敏度的微秒分辨率宽视场荧光寿命成像,但时间分辨率受相机曝光时间的限制。我们在这里展示了如何利用图像增强器的P20荧光粉余辉来为光子到达的精确定时提供足够的时间,该时间远低于相机的曝光时间。通过获取两个后续帧中光子事件强度的比率,可以以300 ns的精度和18.5μs的帧曝光时间(54 kHz相机帧速率)确定光子到达时间。使用低于0.5μW的激发功率,使用该技术绘制了寿命约为1μs的含钌和铱化合物的衰变图,包括在活的HeLa细胞中。讨论了从光子事件强度比计算到达时间的实现细节,并且我们推测,通过使用具有更快的磷光体衰减的图像增强器来匹配更高的相机帧速率,可以在纳秒时间尺度上测量光子到达时间有可能。

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