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Confocal Fluorescence lifetime imaging microscopy based on a real-time sampling method

机译:基于实时采样方法的共聚焦荧光寿命成像显微镜

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摘要

We present a fluorescence lifetime imaging microscope (FL1M) based on a real-time waveform acquisition method. The fluorophores were excited by a 635-nm gain-switched laser diode, which produced short pulses with duration ~50 ps in a 20-MHz repetition rate. The fluorescence signals were detected by a silicon avalanche photo-diode (APD) in addition to a wide-band electric amplifier. The converted electric pulses were sampled by a high-speed digitizer of which sampling rate was 2 GS/s. In order to reduce the sampling interval for analyzing sub-nanosecond lifetimes, an interleaved data acquisition technique was used. The effective sampling rate was increased to 10 GS/s. In addition, the impulse response was measured simultaneously with the lifetime signals by an interleaving manner and was used in calibration of the system. By using these methods, accurate lifetime information was acquired in a short time less than 8 μs.
机译:我们提出了一种基于实时波形采集方法的荧光寿命成像显微镜(FL1M)。荧光团被一个635 nm的增益开关激光二极管激发,该​​二极管以20 MHz的重复频率产生持续时间约为50 ps的短脉冲。除宽带电放大器外,还通过硅雪崩光电二极管(APD)检测荧光信号。转换后的电脉冲由高速数字化仪采样,采样率为2 GS / s。为了减少用于分析亚纳秒寿命的采样间隔,使用了交错数据采集技术。有效采样率增加到10 GS / s。另外,脉冲响应是通过交错方式与寿命信号同时测量的,并用于系统校准。通过使用这些方法,可以在不到8μs的短时间内获得准确的寿命信息。

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