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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Research on high-accuracy biological microscopic imaging and cell counting system
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Research on high-accuracy biological microscopic imaging and cell counting system

机译:高精度生物显微成像与细胞计数系统的研究

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In this study, an observing method which adopts to tilt observation cells through transparent side-wall of cell factory has been put forward to break through the limitation of monitoring method for cell factory. An photoelectric microscopic imaging system with 85 mm working distance, large depth of field and 45 tilt angle has been designed, which can real-time observe each layer cell factory. Meanwhile, according to the characters of the obtained images uneven illumination, sample turbidity, cell overlap and the cell distance, the single scale Retinex (SSR) enhancement algorithm has been adopted to preprocess the image, and then the OTSU is used to segment the image. Finally, a high-accuracy cell counting method based on mathematical statistics and quick connected component labeling is presented. A large number of experimental results show that the resolution of the system can reach 1.1 urn, which meets the requirement of resolution and clearance in biological engineered application. Moreover, the cell image processing method has a good visual effect, and the cell counting accuracy is above 93%. In a word, the detection system is suitable for various cells with great significant engineering value. (C) 2016 Elsevier GmbH. All rights reserved.
机译:本研究提出了一种观察方法,它通过细胞工厂的透明侧壁倾斜观察细胞,从而突破了细胞工厂监测方法的局限性。设计了具有85mm工作距离,大景深和45°倾斜角的光电显微成像系统,该系统可以实时观察各层细胞工厂。同时,根据获得的图像特征,如光照不均匀,样品浊度,细胞重叠和细胞距离,采用单尺度Retinex(SSR)增强算法对图像进行预处理,然后使用OTSU对图像进行分割。 。最后,提出了一种基于数学统计和快速连接组件标记的高精度细胞计数方法。大量实验结果表明,该系统的分离度可达到1.1 urn,满足生物工程应用中分离度和清除率的要求。而且,细胞图像处理方法具有良好的视觉效果,细胞计数准确度在93%以上。总之,该检测系统适用于具有重大工程价值的各种细胞。 (C)2016 Elsevier GmbH。版权所有。

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