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Method for the focal plane determination of microscopic objects

机译:显微物镜焦平面确定方法

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Microscopy autofocus is designed to obtain the best average focus over the entire field of view, even though objects often reside at multiple foci. Here we report the design of a focus detection circuit for random access operation on any object in a given area-of-interest. A previously reported focus measurement technique based on the energy of the high frequency components of the video signal was modified to operate on a programmable area-of-interest. Then, the determination of the focal plane of the measured region corresponds to the position where the focus measure is maximized for the object. Resolutions of less than 10 /spl mu/m have been obtained for the focal plane determination of contiguous objects. Besides, good flexibility on setting the size of the measuring window has been achieved. We expect that this development, coupled to additional image analysis automation, will provide tremendous savings in labor for complex micromanipulation.
机译:显微镜自动对焦旨在在整个视野中获得最佳平均聚焦,即使对象通常驻留在多个焦点。在这里,我们在给定的区域内的任何对象上报告对焦点检测电路的设计。修改了基于视频信号的高频分量的能量的先前报告的焦点测量技术以在可编程区域上运行。然后,测量区域的焦平面的确定对应于对象最大化焦度量的位置。已经获得了小于10 / SPL MU / M的分辨率,用于焦平面的邻接物体的焦平面确定。此外,已经实现了良好的设定测量窗口尺寸的良好灵活性。我们预计这一发展耦合到额外的图像分析自动化,将在劳动力中提供巨大的储蓄以进行复杂的微观管理。

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