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Wide-field time-correlated single-photon counting (TCSPC) lifetime microscopy with microsecond time resolution

机译:具有微秒时间分辨率的广域时间相关单光子计数(TCSPC)寿命显微镜

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摘要

A 1 MHz frame rate complementary metal-oxide semiconductor (CMOS) camera was used in combination with an image intensifier for wide-field time-correlated single-photon counting (TCSPC) imaging. The system combines an ultrafast frame rate with single-photon sensitivity and was employed on a fluorescence microscope to image decays of ruthenium compound Ru(dpp) with lifetimes from around 1 to 5 μs. A submicrowatt excitation power over the whole field of view is sufficient for this approach, and compatibility with live-cell imaging was demonstrated by imaging europium-containing beads with a lifetime of 570 μs in living HeLa cells. A standard two-photon excitation scanning fluorescence lifetime imaging (FLIM) system was used to independently verify the lifetime for the europium beads. This approach brings together advantageous features for time-resolved live-cell imaging such as low excitation intensity, single-photon sensitivity, ultrafast camera frame rates, and short acquisition times.
机译:1 MHz帧频互补金属氧化物半导体(CMOS)相机与图像增强器结合使用,用于宽域时间相关的单光子计数(TCSPC)成像。该系统将超快帧速率与单光子灵敏度结合在一起,并在荧光显微镜上用于对钌化合物Ru(dpp)的衰减进行成像,其寿命约为1至5μs。在整个视野中,亚微瓦激发功率足以实现此方法,并且通过在活HeLa细胞中对具有570μs寿命的含euro磁珠进行成像,证明了与活细胞成像的兼容性。标准的双光子激发扫描荧光寿命成像(FLIM)系统用于独立验证verify珠的寿命。这种方法汇集了时间分辨活细胞成像的有利功能,例如低激发强度,单光子灵敏度,超快相机帧频和较短的采集时间。

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