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Feedback regulation of microscopes by image processing

机译:通过图像处理调节显微镜的反馈

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Computational microscope systems are becoming a major part of imaging biological phenomena, and the development of such systems requires the design of automated regulation of microscopes. An important aspect of automated regulation is feedback regulation, which is the focus of this review. As modern microscope systems become more complex, often with many independent components that must work together, computer control is inevitable since the exact orchestration of parameters and timings for these multiple components is critical to acquire proper images. A number of techniques have been developed for biological imaging to accomplish this. Here, we summarize the basics of computational microscopy for the purpose of building automatically regulated microscopes focus on feedback regulation by image processing. These techniques allow high throughput data acquisition while monitoring both short- and long-term dynamic phenomena, which cannot be achieved without an automated system.
机译:计算显微镜系统正成为成像生物学现象的主要部分,并且这种系统的发展需要对显微镜进行自动调节的设计。自动化调节的一个重要方面是反馈调节,这是本文的重点。随着现代显微镜系统变得越来越复杂,通常有许多必须一起工作的独立组件,由于这些组件的参数和时序的精确编排对于获取合适的图像至关重要,因此计算机控制是不可避免的。已经开发了许多用于生物成像的技术来实现此目的。在这里,我们总结了计算显微镜的基础知识,目的是建立自动调节显微镜,重点是通过图像处理进行反馈调节。这些技术可以在监视短期和长期动态现象的同时实现高吞吐量的数据采集,而没有自动化系统则无法实现。

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