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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Optical crosstalk in SPAD arrays for high-throughput single-molecule fluorescence spectroscopy
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Optical crosstalk in SPAD arrays for high-throughput single-molecule fluorescence spectroscopy

机译:SPAD阵列中的光学串扰,用于高通量单分子荧光光谱

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摘要

Single-molecule fluorescence spectroscopy (SMFS), based on the detection of individual molecules freely diffusing through the excitation spot of a confocal microscope, has allowed unprecedented insights into biological processes at the molecular level, but suffers from limited throughput. We have recently introduced a multispot version of SMFS, which allows achieving high-throughput SMFS by virtue of parallelization, and relies on custom silicon single-photon avalanche diode (SPAD) detector arrays. Here, we examine the premise of this parallelization approach, which is that data acquired from different spots is uncorrelated. In particular, we measure the optical crosstalk characteristics of the two 48-pixel SPAD arrays used in our recent SMFS studies, and demonstrate that it is negligible (crosstalk probability = 1.1 10(-3)) and undetectable in cross-correlation analysis of actual single-molecule fluorescence data. (c) 2017 Published by Elsevier B.V.
机译:基于检测通过共焦显微镜的激发点自由扩散的单个分子的单分子荧光光谱法(SMFS),已经使人们对分子水平的生物过程有了空前的见识,但是产量有限。我们最近推出了多点版本的SMFS,该版本可通过并行化实现高通量SMFS,并依赖于定制的硅单光子雪崩二极管(SPAD)检测器阵列。在这里,我们检查了这种并行化方法的前提,即从不同位置获取的数据是不相关的。特别是,我们测量了我们最近的SMFS研究中使用的两个48像素SPAD阵列的光学串扰特性,并证明了该串扰可以忽略不计(串扰概率<= 1.1 10(-3)),并且在对它们的互相关分析中无法检测到实际的单分子荧光数据。 (c)2017年由Elsevier B.V.

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