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Associating approximate paths and temporal sequences of noisy detections: Application to the recovery of spatio-temporal cancer cell trajectories

机译:噪声检测的相关近似路径和时间序列:应用于时空癌细胞轨迹的恢复

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摘要

In this paper we address the problem of recovering spatio-temporal trajectories of cancer cells in phase contrast video-microscopy where the user provides the paths on which the cells are moving. The paths are purely spatial, without temporal information. To recover the temporal information associated to a given path we propose an approach based on automatic cell detection and on a graph-based shortest path search. The nodes in the graph consist of the projections of the cell detections onto the geometrical cell path. The edges relate nodes which correspond to different frames of the sequence and potentially to the same cell and trajectory. In this directed graph we search for the shortest path and use it to define a temporal parametrization of the corresponding geometrical cell path. An evaluation based on 286 paths of 7 phase contrast microscopy videos shows that our algorithm allows to recover 92% of trajectory points with respect to the associated ground truth. We compare our method with a state-of-the-art algorithm for semi-automated cell tracking in phase contrast microscopy which requires interactively placed starting points for the cells to track. The comparison shows that supporting geometrical paths in combination with our algorithm allow us to obtain more reliable cell trajectories.
机译:在本文中,我们解决了在相对逆视频显微镜中恢复癌细胞的时空轨迹的问题,其中用户提供了电池移动的路径。路径纯粹是空间的,没有时间信息。为了恢复与给定路径相关联的时间信息,我们提出了一种基于自动单元检测的方法和基于图形的最短路径搜索。图中的节点包括电池检测到几何小区路径的投影。边缘涉及对应于序列的不同帧的节点,并且可能到相同的小区和轨迹。在此定向图中,我们搜索最短路径并使用它来定义相应的几何小区路径的时间参数化。基于286个路径的7个相位对比度显微镜视频的评估表明,我们的算法允许恢复相对于相关的地面真理的92%的轨迹点。我们将我们的方法与最先进的算法进行了最新的算法,用于相位对比显微镜的半自动单元跟踪,其需要交互地放置用于追踪单元的起始点。比较表明,支持与我们的算法组合的几何路径允许我们获得更可靠的单元格轨迹。

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