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单分子时间相关单光子计数测量的信息论分析

Information-theoretical analysis of time-correlated single-photon counting measurements of single molecules.

作者信息

Talaga David S

机构信息

Rutgers, the State University of New Jersey, New Brunswick, New Jersey 08854, USA.

出版信息

J Phys Chem A. 2009 Apr 30;113(17):5251-63. doi: 10.1021/jp8082908.

Abstract

Time-correlated single photon counting allows luminescence lifetime information to be determined on a single molecule level. This paper develops a formalism to allow information theory analysis of the ability of luminescence lifetime measurements to resolve states in a single molecule. It analyzes the information content of the photon stream and the fraction of that information that is relevant to the state determination problem. Experimental losses of information due to instrument response, digitization, and different types of background are calculated and a procedure to determine the optimal value of experimental parameters is demonstrated. This paper shows how to use the information theoretical formalism to evaluate the number of photons required to distinguish dyes that differ only by lifetime. It extends this idea to include distinguishing molecular states that differ in the electron transfer quenching or resonant energy transfer and shows how the differences between the lifetime of signal and background can help distinguish the dye position in an excitation beam.

摘要

时间相关单光子计数能够在单分子水平上确定发光寿命信息。本文建立了一种形式体系,以便对发光寿命测量分辨单分子中不同状态的能力进行信息论分析。它分析了光子流的信息内容以及与状态确定问题相关的该信息的比例。计算了由于仪器响应、数字化和不同类型背景导致的信息实验损失,并展示了确定实验参数最佳值的程序。本文展示了如何使用信息论形式体系来评估区分仅寿命不同的染料所需的光子数。它将这一思想扩展到包括区分在电子转移猝灭或共振能量转移方面不同的分子状态,并展示了信号与背景寿命之间的差异如何有助于区分染料在激发光束中的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8fe/2767183/f47a71fb019e/nihms112587f1.jpg

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