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Analyzing 3D cell data of optical diffraction tomography through volume rendering

机译:通过体积渲染分析光衍射断层扫描的3D细胞数据

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Optical diffraction tomography (ODT) constitutes a novel approach for acquiring cell images since it is capable of capturing morphology of a living cell without chemical treatment. ODT is an interferometric technique that measures the 3D refractive index (RI) distribution of optically transparent samples such as biological cells. Unlike other cell imaging modalities, na?ve ODT data do not contain encoded information about the cellular properties such as labeled protein in fluorescent microscopic data or the fixed border of a cell wall in scanning electron microscopic data. Therefore, specifying the region of interest in the raw image is an important and challenging task for a quantitative analysis of ODT cell data. We propose an interactive interface for reconstructing 3D shape of cells from ODT image data based on intervening visualization results of the cell data to guide the investigator observing the overall blueprint of cell morphology. The cell organelles are segmented based on the lookup table referring corresponding transfer function items adopted from volume rendering technique. The final shape of the cell is then constructed as mesh models from the segmentation results for further quantitative analyses. In this paper, we also demonstrate the various modeling options accounting characteristics of target cell.
机译:光衍射断层扫描(ODT)构成了用于获取细胞图像的新方法,因为它能够在没有化学处理的情况下捕获活细胞的形态。 ODT是一种干涉测量技术,可测量光学透明样品如生物细胞的3D折射率(RI)分布。与其他细胞成像模式不同,Na ve Odt数据不含关于荧光显微镜数据中标记蛋白质的细胞性质的编码信息,或者在扫描电子显微镜数据中的细胞壁的固定边界。因此,指定原始图像中的感兴趣区域是对ODT细胞数据进行定量分析的重要和具有挑战性的任务。我们提出了一种基于间隔可视化结果的用于从ODT图像数据重建3D形状的交互式界面,以指导研究者观察细胞形态的整体蓝图。基于从体积渲染技术中采用的相应传递函数项目进行查找表来分割小区细胞器。然后将细胞的最终形状构成为来自分段结果的网状模型,以进一步定量分析。在本文中,我们还展示了目标细胞的各种建模选项会计特征。

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