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在激光扫描显微镜中进行 FLIM 和 FCS 检测:通过 GaAsP 混合探测器提高效率。

FLIM and FCS detection in laser-scanning microscopes: increased efficiency by GaAsP hybrid detectors.

机构信息

Becker & Hickl GmbH, Nahmitzer Damm 30, Berlin, Germany.

出版信息

Microsc Res Tech. 2011 Sep;74(9):804-11. doi: 10.1002/jemt.20959. Epub 2010 Dec 3.

Abstract

Photon counting detectors currently used in fluorescence lifetime microscopy have a number of deficiencies that result in less-than-ideal signal-to-noise ratio of the lifetimes obtained: either the quantum efficiency is unsatisfactory or the active area is too small, and afterpulsing or tails in the temporal response contribute to overall timing inaccuracy. We have therefore developed a new FLIM detector based on a GaAsP hybrid photomultiplier. Compared with conventional PMTs and SPADs, GaAsP hybrid detectors have a number of advantages: The detection quantum efficiency reaches or surpasses the efficiency of fast SPADs, and the active area is on the order of 5 mm², compared with 2.5 10⁻³ mm² for a SPAD. The TCSPC response is clean, without the bumps and the diffusion tails typical for PMTs and SPADs. Most important, the hybrid detector is intrinsically free of afterpulsing. FLIM results are therefore free of signal-dependent background, and FCS curves are free of the known afterpulsing peak. We demonstrate the performance of the new detector for multiphoton NDD FLIM and for FCS.

摘要

目前用于荧光寿命显微镜的光子计数探测器存在一些缺陷,导致获得的寿命信号与噪声比不理想:要么量子效率不令人满意,要么有效面积太小,而时间响应中的后脉冲或拖尾会导致整体定时精度不准确。因此,我们基于 GaAsP 混合光电倍增管开发了一种新型 FLIM 探测器。与传统的 PMT 和 SPAD 相比,GaAsP 混合探测器具有许多优点:检测量子效率达到或超过快速 SPAD 的效率,有效面积约为 5mm²,而 SPAD 的有效面积为 2.5×10⁻³mm²。TCSPC 响应干净,没有 PMT 和 SPAD 典型的凸起和扩散拖尾。最重要的是,混合探测器本质上没有后脉冲。因此,FLIM 结果没有信号相关的背景,FCS 曲线也没有已知的后脉冲峰。我们展示了新探测器在多光子 NDD FLIM 和 FCS 中的性能。

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