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Multidimensional microscopy image processing

机译:多维显微镜图像处理

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Abstract: cal image processing system is developed for automatic identification (recognition) and characterization of confocal fluorescent images (serial optical sections). The system is capable of identifying a large percentage of structures (e.g., DNA replication sites) in the presence of background noise and non specific staining of cellular structures. A combination of image processing techniques are applied to successively refine the input image and is so organized as to find the surfaces of highly visible structures first, using simple image processing techniques, and then to adjust and fill in the missing areas of these object surfaces using a number of more complex image processing techniques. As a result, the image analysis system is capable of obtaining morphometric parameters such as surface area, volume, and position of structures of interest automatically. The system provides a powerful tool for biomedical research such as micro-structure characterization, morphogenesis, cell differentiation, tissue organization, and embryo development. We illustrate the performance of the confocal image analysis system by using an image of DNA replication sites in a mammalian 3T3 cell. !31
机译:摘要:开发了用于自动识别(识别)和表征共聚焦荧光图像(串行光学切片)的校准图像处理系统。该系统能够在存在背景噪声和细胞结构的非特异性染色的情况下识别大部分结构(例如,DNA复制位点)。运用图像处理技术的组合来逐次细化输入图像,并进行组织,以便首先使用简单的图像处理技术找到高度可见的结构的表面,然后使用以下方法调整并填充这些对象表面的缺失区域许多更复杂的图像处理技术。结果,图像分析系统能够自动获得诸如感兴趣的结构的表面积,体积和位置之类的形态参数。该系统为生物医学研究提供了强大的工具,例如微观结构表征,形态发生,细胞分化,组织组织和胚胎发育。我们通过使用哺乳动物3T3细胞中的DNA复制位点的图像来说明共聚焦图像分析系统的性能。 !31

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