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首页> 外文期刊>Applied optics >High-speed time-resolved laser-scanning microscopy using the line-to-pixel referencing method
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High-speed time-resolved laser-scanning microscopy using the line-to-pixel referencing method

机译:使用线到像素参考方法的高速时间分辨激光扫描显微镜

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摘要

Fluorescence lifetime imaging microscopy (FLIM) is a powerful technique to visualize photophysical characteristics of biological targets. However, conventional FLIM methods have some limitations that restrict obtaining high-precision images in real time. Here, we propose a high-speed time-resolved laser-scanning microscopy by incorporating a novel line-to-pixel referencing method into the previously suggested analog mean-delay (AMD) method. The AMD method dramatically enhances the photon accumulation speed for achieving the certain precision compared to the time-correlated single-photon counting (TCSPC) method while maintaining high photon efficiency. However, its imaging pixel rate can still be restricted by the rearm time of the digitizer when it is triggered by laser pulses. With our line-to-pixel referencing method, the pulse train repeats faster than the trigger rearm time can be utilized by generating a line trigger, which is phase-locked with only the first pulse in each horizontal line composing an image. Our proposed method has been tested with a pulsed laser with 40 MHz repetition rate and a commercial digitizer with a 500 ns trigger rearm time, and a frame rate of 3.73 fps with a pixel rate of 3.91 MHz was accomplished while maintaining the measurement precision under 20 ps. (C) 2016 Optical Society of America
机译:荧光寿命成像显微镜(FLIM)是一种强大的技术,可以可视化生物目标的光物理特征。然而,传统的FLIM方法具有一些局限性,限制了实时获得高精度图像。在这里,我们提出了一种高速时间分辨激光扫描显微镜,方法是将一种新型的行像素参考方法合并到先前建议的模拟均值延迟(AMD)方法中。与时间相关的单光子计数(TCSPC)方法相比,AMD方法极大地提高了光子积累速度,从而达到了一定的精度,同时保持了高光子效率。但是,当数字化仪被激光脉冲触发时,其成像像素速率仍可能受到数字化仪重新设置时间的限制。使用我们的线到像素参考方法,脉冲序列的重复速度比通过生成线触发可利用触发重新设置时间快,该线触发仅与组成图像的每条水平线中的第一个脉冲锁相。我们提出的方法已经用40 MHz重复频率的脉冲激光和500 ns触发重设时间的商用数字化仪进行了测试,在保持测量精度低于20的同时,实现了3.73 fps的帧速率和3.91 MHz的像素速率。 ps。 (C)2016美国眼镜学会

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