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首页> 外文期刊>Journal of Microscopy >Bilateral prediction and intersection calculation autofocus method for automated microscopy
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Bilateral prediction and intersection calculation autofocus method for automated microscopy

机译:用于自动显微镜的双边预测和交点计算自动聚焦方法

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In this paper, a bilateral prediction and intersection calculation autofocus method for automated microscopy, which obtains the in-focus position by calculating the intersection of the predicted left and right focus measure curves located respectively in the left and right sides of the peak position of the focus measure curve, is proposed and performed. According to the autofocus method, the area including the peak position of the focus measure curve and its left and right neighbourhoods should be determined firstly, and the left and right neighbourhoods are considered as the left and right sampling areas. The left and right focus measure curves are predicted by appropriate predicting models according to the two sample sequences, which comprise the focus values by evaluating the sampled images in the left sampling area and right sampling area, respectively and their corresponding sampling positions. The intersection of the predicted left and right focus measure curves is calculated and can be considered as the in-focus position. The autofocus can be realized by moving the focus plane of the microscope to the intersection of the predicted left and right focus measure curves. The proposed bilateral prediction and intersection calculation autofocus method is experimentally verified in an automated light microscopy for implementing microassembly and micromanipulation. The theoretical analyses have shown that the proposed bilateral prediction and intersection calculation autofocus method can not only effectively avoid the principle error caused by assuming the symmetrical focus measure curve in the autofocus methods based on curve fitting, but also eliminate the possible waver search near the peak position in the modified fast climbing servo method. The experimental results have shown that the proposed bilateral prediction and intersection calculation autofocus method possesses the merits as follows: (1) the focusing accuracy is high and slightly affected by the sampling step size and (2) the focusing speed is higher than those of the 7-point hill-climbing search method and the quadratic curve fitting method with a determinate focusing accuracy.
机译:本文提出了一种用于自动显微镜的双边预测和交点计算自动聚焦方法,该方法通过计算分别位于其峰值位置的左侧和右侧的预测的左右聚焦测量曲线的交点来获得聚焦位置。提出并执行了焦点测量曲线。根据自动聚焦方法,首先应确定包括聚焦测量曲线的峰值位置及其左右邻域的区域,并将左右邻域视为左右采样区域。通过适当的预测模型,根据两个样本序列来预测左右焦点测量曲线,该两个样本序列通过分别评估在左采样区域和右采样区域中的采样图像及其对应的采样位置来构成焦点值。计算出预测的左右焦点测量曲线的交点,可以将其视为焦点对准位置。通过将显微镜的聚焦平面移至预测的左右聚焦测量曲线的交点,可以实现自动聚焦。提出的双边预测和交点计算自动聚焦方法在自动光学显微镜中进行了实验验证,以实现微装配和微操纵。理论分析表明,所提出的双边预测和交点计算自动聚焦方法不仅可以有效地避免基于曲线拟合的自动聚焦方法中假设对称的聚焦测量曲线而引起的原理误差,而且消除了峰值附近可能出现的波动搜索。在改进的快速爬升伺服方法中的位置。实验结果表明,所提出的双边预测与交点计算自动聚焦方法具有以下优点:(1)聚焦精度高,且受采样步长的影响很小;(2)聚焦速度高于具有确定的聚焦精度的7点爬山搜索方法和二次曲线拟合方法。

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