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首页> 外文期刊>Journal of Microscopy >Rapid acquisition of high-volume microscopic images using predicted focal plane
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Rapid acquisition of high-volume microscopic images using predicted focal plane

机译:使用预测的焦平面快速采集大量显微图像

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For an automated microscopic imaging system, the image acquisition speed is one of the most critical performance features because many applications require to analyse high-volume images. This paper illustrates a novel approach for rapid acquisition of high-volume microscopic images used to count blood cells automatically. This approach firstly forms a panoramic image of the sample slide by stitching sequential images captured at a low magnification, selects a few basic points (x, y) indicating the target areas from the panoramic image, and then refocuses the slide at each of the basic points at the regular magnification to record the depth position (z). The focusing coordinates (x, y, z) at these basic points are used to calculate a predicted focal plane that defines the relationship between the focus position (z) and the stage position (x, y). Via the predicted focal plane, the system can directly focus the objective lens at any local view, and can tremendously save image-acquisition time by avoiding the autofocusing function. The experiments showed how to determine the optimal number of the basic points at a given imaging condition, and proved that there is no significant difference between the images captured using the autofocusing function or the predicted focal plane.
机译:对于自动显微成像系统,由于许多应用程序需要分析大容量图像,因此图像采集速度是最关键的性能特征之一。本文阐述了一种新颖的方法,用于快速采集用于自动计数血细胞的大量显微图像。该方法首先通过拼接以低倍率捕获的顺序图像来形成样本幻灯片的全景图像,然后从全景图像中选择一些指示目标区域的基本点(x,y),然后将幻灯片重新聚焦在每个基本位置上指向常规放大倍数以记录深度位置(z)。这些基本点处的聚焦坐标(x,y,z)用于计算预测的焦平面,该焦平面定义了聚焦位置(z)和载物台位置(x,y)之间的关系。通过预测的焦平面,该系统可以将物镜直接聚焦在任何局部视图上,并且可以避免自动聚焦功能,从而极大地节省了图像采集时间。实验表明,如何确定给定成像条件下的最佳基点数量,并证明使用自动聚焦功能或预测焦平面拍摄的图像之间没有显着差异。

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