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Four-dimensional multiphoton microscopy with time-correlated single-photon counting

机译:与时间相关的单光子计数的多维多光子显微镜

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We report on the implementation of fluorescence-lifetime imaging in multiphoton excitation microscopy that uses PC-compatible modules for time-correlated single-photon counting. Four-dimensional data stacks are produced with each pixel featuring fluorescence-decay curves that consist of as many as 4096 bins. Fluorescence lifetime(s) and their amplitude(s) are extracted by statistical methods at each pixel or in arbitrarily defined regions of interest. When employing an avalanche photodiode the width of the temporal response function is 420 ps. Although this response confines the temporal resolution to values greater than several hundreds of picoseconds, the lifetime precision is determined by the signal-to-noise ratio and can be in the range of tens of picosconds. Lifetime changes are visualized in pulsed-laser-deposited fluorescent layers as well as in cyan fluorescent proteins that transfer energy to yellow fluorescent proteins in live mammalian cells.
机译:我们报告了使用与PC兼容的模块进行时间相关的单光子计数的多光子激发显微镜中荧光寿命成像的实施情况。产生四个数据堆栈,每个像素具有荧光衰减曲线,该曲线由多达4096个bin组成。通过统计方法在每个像素处或在任意定义的感兴趣区域中提取荧光寿命及其幅度。当使用雪崩光电二极管时,时间响应函数的宽度为420 ps。尽管此响应将时间分辨率限制在大于几百皮秒的值,但寿命精度由信噪比确定,并且可以在数十皮秒的范围内。生命周期的变化可以在脉冲激光沉积的荧光层以及将能量转移到活的哺乳动物细胞中的黄色荧光蛋白的青色荧光蛋白中看到。

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