Webb W W
Appl Opt. 2001 Aug 20;40(24):3969-83. doi: 10.1364/ao.40.003969.
Fluorescence correlation spectroscopy examines the chemical and the photophysical dynamics of dilute molecular solutions by measurement of the dynamic optical fluctuations of the fluorescence of a few molecules, even averaging less than one molecule at a time, in open focal volumes that are usually less than a femtoliter (<10(-18) m(3)). It applies the same principles of statistical thermodynamics as does quasi-elastic light scattering. Molecular interactions, conformational changes, chemical reactions, and photophysical dynamics that are not ordinarily detectable by quasi-elastic light scattering can be analyzed by fluorescence correlation spectroscopy in cases in which molecular fluorescence changes in the dynamic range 10(-7)-10(2) s.
荧光相关光谱法通过测量少量分子荧光的动态光学涨落来研究稀分子溶液的化学和光物理动力学,在通常小于飞升(<10⁻¹⁸立方米)的开放聚焦体积中,每次平均甚至少于一个分子。它应用与准弹性光散射相同的统计热力学原理。在分子荧光在10⁻⁷ - 10²秒的动态范围内发生变化的情况下,准弹性光散射通常无法检测到的分子相互作用、构象变化、化学反应和光物理动力学可以通过荧光相关光谱法进行分析。