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首页> 外文期刊>Cell Reports >EllipTrack: A Global-Local Cell-Tracking Pipeline for 2D Fluorescence Time-Lapse Microscopy
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EllipTrack: A Global-Local Cell-Tracking Pipeline for 2D Fluorescence Time-Lapse Microscopy

机译:elliptrack:用于2D荧光时间流失显微镜的全球局部细胞跟踪管​​道

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Time-lapse microscopy provides an unprecedented opportunity to monitor single-cell dynamics. However, tracking cells for long periods remains a technical challenge, especially for multi-day, large-scale movies with rapid cell migration, high cell density, and drug treatments that alter cell morphology/behavior. Here, we present EllipTrack, a global-local cell-tracking pipeline optimized for tracking such movies. EllipTrack first implements a global track-linking algorithm to construct tracks that maximize the probability of cell lineages. Tracking mistakes are then corrected with a local track-correction module in which tracks generated by the global algorithm are systematically examined and amended if a more probable alternative can be found. Through benchmarking, we show that EllipTrack outperforms state-of-the-art cell trackers and generates nearly error-free cell lineages for multiple large-scale movies. In addition, EllipTrack can adapt to time- and cell-density-dependent changes in cell migration speeds and requires minimal training datasets. EllipTrack is available at https://github.com/tianchengzhe/EllipTrack .
机译:延时显微镜提供了监控单个细胞动态的前所未有的机会。然而,长期跟踪细胞仍然是技术挑战,特别是对于多日,大型电影具有快速的细胞迁移,高细胞密度和药物处理,以及改变细胞形态/行为的药物处理。在这里,我们呈现EllipTrack,是针对跟踪此类电影的全球本地单元跟踪管道。 eltiptrack首先实现全局轨道链接算法,以构建最大化细胞谱系概率的曲目。然后,通过局部轨道校正模块校正跟踪错误,其中系统地检查由全局算法生成的轨道,并且如果可以找到更可能的替代方案,则系统地检查和修改。通过基准测试,我们表明Elliptrack优于最先进的单元格跟踪器,并为多个大型电影产生几乎无差错的小区谱系。此外,elliptrack可以适应细胞迁移速度的时间和细胞密度相关的变化,并且需要最小的训练数据集。 elliptrack可在https://github.com/tianchengzhe/elliptrack提供。

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