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Autofocus using adaptive prediction approximation combined search for the fluorescence microscope in second-generation DNA sequencing system

机译:在第二代DNA测序系统中使用自适应预测近似自动聚焦结合搜索荧光显微镜

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Autofocus is an important technique for high-speed image acquisition in the second-generation DNA sequencing system, and this paper studies the passive focus algorithm for the system, which consists of two parts: focus measurement (FM) and focus search (FS). Based on the properties of DNA chips' images, we choose the normalized variance as the FM algorithm and develop a new robust FS named adaptive prediction approximation combined search (APACS). APACS utilizes golden section search (GSS) to approximate the focus position and engages the curve-fitting search (CFS) to predict the position simultaneously in every step of GSS. When the difference between consecutive predictions meets the set precision, the search finishes. Otherwise, it ends as GSS. In APACS, we also propose an estimation method, named the combination of centroid estimation and overdetermined equations estimation by least squares solution, to calculate the initial vector for the nonlinear equations in APACS prediction, which reduces the iterations and accelerates the search. The simulation and measured results demonstrate that APACS not only maintains the stability but also reduces the focus time compared with GSS and CFS, which indicates APACS is a robust and fast FS for the fluorescence microscope in a sequencing system.
机译:自动聚焦是第二代DNA测序系统中高速图像采集的一项重要技术,本文研究了该系统的被动聚焦算法,该算法由两部分组成:聚焦测量(FM)和聚焦搜索(FS)。根据DNA芯片图像的特性,我们选择归一化方差作为FM算法,并开发了一种新的鲁棒FS,称为自适应预测近似组合搜索(APACS)。 APACS利用黄金分割搜索(GSS)来估计焦点位置,并在GSS的每个步骤中使用曲线拟合搜索(CFS)来同时预测位置。当连续预测之间的差异达到设置的精度时,搜索结束。否则,它以GSS结尾。在APACS中,我们还提出了一种估计方法,即通过最小二乘解将质心估计与超定方程估计结合起来,以计算APACS预测中非线性方程的初始向量,从而减少了迭代并加快了搜索速度。仿真和测量结果表明,与GSS和CFS相比,APACS不仅保持稳定性,而且减少了聚焦时间,这表明APACS是用于测序系统中荧光显微镜的强大而快速的FS。

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