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Evaluation of fitness parameters used in an iterative approach to aberration correction in optical sectioning microscopy

机译:光学切片显微镜中用于迭代校正像差的迭代方法中使用的适应度参数的评估

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摘要

A major problem when imaging at depth within a biological sample in confocal or nonlinear microscopy is the introduction of sample induced aberrations. Adaptive optical systems can provide a technique to compensate for these sample aberrations and often iterative optimizations are used to improve on a particular parameter of the image (known as the fitness parameter). In this investigation, using a deformable membrane mirror as the adaptive optic element, we examine the effectiveness of a number of fitness parameters, when used with a genetic algorithm, at determining the optimal mirror shape required to compensate for sample induced aberrations. These fitness parameters are compared in terms of the number of mirror changes required to achieve optimization and the final axial resolution of the optical system. The effect that optimizing each fitness parameter has on the lateral and axial point-spread function is also examined.
机译:当在共聚焦或非线性显微镜中对生物样品进行深度成像时,一个主要问题是引入样品引起的像差。自适应光学系统可以提供一种补偿这些样本像差的技术,并且经常使用迭代优化来改善图像的特定参数(称为适应性参数)。在这项研究中,使用可变形膜镜作为自适应光学元件,当与遗传算法一起使用时,我们检查了许多适应性参数在确定补偿样品引起的像差所需的最佳镜形时的有效性。这些适应性参数根据实现优化所需的镜面更换数量和光学系统的最终轴向分辨率进行比较。还检查了优化每个适应度参数对横向和轴向点扩展功能的影响。

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