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A Fast Global Fitting Algorithm for Fluorescence Lifetime Imaging Microscopy Based on Image Segmentation

机译:基于图像分割的荧光寿命成像显微快速全局拟合算法

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摘要

Global fitting algorithms have been shown to improve effectively the accuracy and precision of the analysis of fluorescence lifetime imaging microscopy data. Global analysis performs better than unconstrained data fitting when prior information exists, such as the spatial invariance of the lifetimes of individual fluorescent species. The highly coupled nature of global analysis often results in a significantly slower convergence of the data fitting algorithm as compared with unconstrained analysis. Convergence speed can be greatly accelerated by providing appropriate initial guesses. Realizing that the image morphology often correlates with fluorophore distribution, a global fitting algorithm has been developed to assign initial guesses throughout an image based on a segmentation analysis. This algorithm was tested on both simulated data sets and time-domain lifetime measurements. We have successfully measured fluorophore distribution in fibroblasts stained with Hoechst and calcein. This method further allows second harmonic generation from collagen and elastin autofluorescence to be differentiated in fluorescence lifetime imaging microscopy images of ex vivo human skin. On our experimental measurement, this algorithm increased convergence speed by over two orders of magnitude and achieved significantly better fits.
机译:全局拟合算法已被证明可以有效地提高荧光寿命成像显微镜数据分析的准确性和精确度。当存在先验信息(例如单个荧光物质的寿命的空间不变性)时,全局分析的性能要比无约束的数据拟合更好。与无约束分析相比,全局分析的高度耦合性质通常会导致数据拟合算法的收敛速度大大降低。通过提供适当的初始猜测,可以大大加快收敛速度​​。意识到图像形态通常与荧光团分布相关,已经开发了一种全局拟合算法,可以基于分割分析在整个图像中分配初始猜测。该算法已在模拟数据集和时域寿命测量中进行了测试。我们已经成功地测量了用赫斯特和钙黄绿素染色的成纤维细胞中的荧光团分布。该方法还允许在离体人类皮肤的荧光寿命成像显微镜图像中区分由胶原和弹性蛋白自发荧光产生的二次谐波。在我们的实验测量中,该算法将收敛速度提高了两个数量级,并且拟合效果显着提高。

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