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A self-adaptive and nonmechanical motion autofocusing system for optical microscopes

机译:光学显微镜的自适应非机械运动自动聚焦系统

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摘要

For the design of a passive autofocusing (AF) system for optical microscopes, many time-consuming and tedious experiments have been performed to determine and design a better focus criterion function, owing to the sample-dependence of this function. To accelerate the development of the AF systems in optical microscopes and to increase AF speed as well as maintain the AF accuracy, this study proposes a self-adaptive and nonmechanical motion AF system. The presented AF system does not require the selection and design of a focus criterion function when it is developed. Instead, the system can automatically determine a better focus criterion function for an observed sample by analyzing the texture features of the sample and subsequently perform an AF procedure to bring the sample into focus in the objective of an optical microscope. In addition, to increase the AF speed, the Z axis scanning of the mechanical motion of the sample or the objective is replaced by focusing scanning performed by a liquid lens, which is driven by an electrical current and does not involve mechanical motion. Experiments show that the reproducibility of the results obtained with the proposed self-adaptive and nonmechanical motion AF system is better than that provided by that of traditional AF systems, and that the AF speed is 10 times faster than that of traditional AF systems. Also, the self-adaptive function increased the speed of AF process by an average of 10.5% than Laplacian and Tenegrad functions.
机译:对于光学显微镜的被动自动聚焦(AF)系统的设计,由于该函数的样本依赖性,已经进行了许多耗时且繁琐的实验来确定和设计更好的聚焦标准函数。为了加快光学显微镜自动对焦系统的开发并提高自动对焦速度并保持自动对焦精度,本研究提出了一种自适应且非机械运动的自动对焦系统。提出的自动对焦系统在开发时不需要选择和设计对焦标准功能。取而代之的是,该系统可以通过分析样本的纹理特征,自动为观察到的样本确定更好的聚焦标准功能,然后执行AF程序以将样本聚焦到光学显微镜的物镜中。另外,为了提高AF速度,通过由电流驱动并且不涉及机械运动的液体透镜进行的聚焦扫描来代替样品或物镜的机械运动的Z轴扫描。实验表明,所提出的自适应和非机械运动自动对焦系统所获得的结果的可再现性优于传统自动对焦系统所提供的结果,并且自动对焦速度比传统自动对焦系统快10倍。而且,自适应功能比拉普拉斯函数和特涅格勒函数平均提高了AF处理速度10.5%。

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