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A Case Study on 3-D Reconstruction and Shape Description of Peroxisomes in Yeast

机译:酵母中过氧化物酶体的3-D重建和形状描述的案例研究

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Subcellular organelles are commonly analyzed using 2-D fluorescent microscopy. However, 3-D reconstruction and analysis of organelle topology in a high-throughput manner promises to result in a better understanding of cellular systems. We developed image analysis methods for automated quantitative analysis of peroxisome shapes. The methods employ 3-D image stacks obtained by confocal microscopy. There are three fundamental phases: image preprocessing and segmentation, 3-D reconstruction, and automated quantification of peroxisome topology in 3-D using shape descriptors. The algorithms are shown to produce results that can be used to classify objects of different topologies, and to enable visual studies of peroxisomes in 3-D.
机译:通常使用二维荧光显微镜分析亚细胞器。但是,以高通量方式对细胞器拓扑结构进行3-D重建和分析有望对细胞系统有更好的了解。我们开发了图像分析方法,用于对过氧化物酶体形状进行自动定量分析。该方法采用通过共聚焦显微镜获得的3-D图像堆栈。共有三个基本阶段:图像预处理和分割,3-D重建以及使用形状描述符对3-D中的过氧化物酶体拓扑进行自动定量。所显示的算法产生的结果可用于对不同拓扑的对象进行分类,并能够对3-D中的过氧化物酶体进行可视化研究。

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