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Universal Approach to FRAP Analysis of Arbitrary Bleaching Patterns

机译:任意漂白模式的普遍方法分析

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The original approach to calculating diffusion coefficients of a fluorescent probe from Fluorescence Recovery After Photobleaching (FRAP) measurements assumes bleaching with a circular laser beam of a Gaussian intensity profile. This method was used without imaging the bleached cell. An empirical equation for calculating diffusion coefficients from a rectangular bleaching geometry, created in a confocal image, was later published, however a single method allowing the calculation of diffusion coefficients for arbitrary geometry does not exist. Our simulation approach allows computation of diffusion coefficients regardless of bleaching geometry used in the FRAP experiment. It accepts a multiple-frame TIFF file, representing the experiment as input, and simulates the (pure) diffusion of the fluorescent probes (2D random walk) starting with the first post-bleach frame of the actual data. It then fits the simulated data to the real data and extracts the diffusion coefficient. We validate our approach using a well characterized diffusing molecule (DiIC18) against well-established analytical procedures. We show that the algorithm is able to calculate the absolute value of diffusion coefficients for arbitrary bleaching geometries, including exaggeratedly large ones. It is provided freely as an ImageJ plugin, and should facilitate quantitative FRAP measurements for users equipped with standard fluorescence microscopy setups.
机译:从光漂白(FRAP)测量后计算荧光探针扩散系数的原始方法假定与高斯强度曲线的圆形激光束漂白。使用该方法而无需成像漂白细胞。稍后公布了用于计算在共聚焦图像中创建的矩形漂白几何形状的矩形漂白几何形状的经验方程,但是允许计算用于任意几何形状的扩散系数的单个方法。我们的仿真方法允许计算扩散系数,而不管FRAP实验中使用的漂白几何形状。它接受多帧TIFF文件,将实验称为输入,并从实际数据的第一个漂白框架开始模拟荧光探针(2D随机步道)的(纯)扩散。然后,它将模拟数据拟合到真实数据并提取扩散系数。我们使用良好特征的扩散分子(DIIC 18 )来验证我们的方法,针对良好的建立的分析程序。我们表明该算法能够计算任意漂白几何形状的扩散系数的绝对值,包括夸张地大。它自由作为ImageJ插件提供,并且应为配备标准荧光显微镜设置的用户提供定量FRAP测量。

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