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THREE-DIMENSIONAL CELL AND TISSUE IMAGE ANALYSIS FOR CELLULAR AND SUB-CELLULAR MORPHOLOGICAL MODELING AND CLASSIFICATION

机译:细胞和亚细胞形态建模和分类的三维细胞和组织图像分析

摘要

The ability to automate the processes of specimen collection, image acquisition, data pre-processing, computation of derived biomarkers, modeling, classification and analysis can significantly impact clinical decision-making and fundamental investigation of cell deformation. This disclosure combine 3D cell nuclear shape modeling by robust smooth surface reconstruction and extraction of shape morphometry measure into a highly parallel pipeline workflow protocol for end-to-end morphological analysis of thousands of nuclei and nucleoli in 3D. This approach allows efficient and informative evaluation of cell shapes in the imaging data and represents a reproducible technique that can be validated, modified, and repurposed by the biomedical community. This facilitates result reproducibility, collaborative method validation, and broad knowledge dissemination.
机译:自动执行标本采集,图像采集,数据预处理,衍生生物标志物的计算,建模,分类和分析过程的能力可以极大地影响临床决策和细胞变形的基础研究。本公开将通过鲁棒的光滑表面重建和形状形态测量的提取的3D细胞核形状建模结合到高度并行的管线工作流协议中,以用于在3D中对数千个核和核仁进行端到端形态分析。这种方法可以对成像数据中的细胞形状进行高效且信息丰富的评估,并且代表了一种可重现的技术,可以由生物医学界进行验证,修改和重新利用。这促进了结果的可重复性,协作方法验证和广泛的知识传播。

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