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首页> 外文期刊>Integrative Biology: quantitative biosciences from nano to macro >Cell Image Velocimetry (CIV): boosting the automated quantification of cell migration in wound healing assays
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Cell Image Velocimetry (CIV): boosting the automated quantification of cell migration in wound healing assays

机译:细胞图像测速(CIV):在伤口愈合测定中促进细胞迁移的自动化定量

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摘要

Cell migration is commonly quantified by tracking the speed of the cell layer interface in wound healing assays. This quantification is often hampered by low signal to noise ratio, in particular when complex substrates are employed to emulate in vivo cell migration in geometrically complex environments. Moreover, information about the cell motion, readily available inside the migrating cell layers, is not usually harvested. We introduce Cell Image Velocimetry (CIV), a combination of cell layer segmentation and image velocimetry algorithms, to drastically enhance the quantification of cell migration by wound healing assays. The resulting software analyses the speed of the interface as well as the detailed velocity field inside the cell layers in an automated fashion. CIV is shown to be highly robust for images with low signal to noise ratio, low contrast and frame shifting and it is portable across various experimental settings. The modular design and parametrization of CIV is not restricted to wound healing assays and allows for the exploration and quantification of flow phenomena in any optical microscopy dataset. Here, we demonstrate the capabilities of CIV in wound healing assays over topographically engineered surfaces and quantify the relative merits of differently aligned gratings on cell migration.
机译:通常通过在伤口愈合试验中跟踪细胞层界面的速度来量化细胞迁移。低定量信噪比通常会阻碍这种量化,特别是在采用复杂的底物模拟几何形状复杂的环境中体内细胞迁移时。而且,通常不收集关于迁移的细胞层内容易获得的细胞运动的信息。我们介绍了细胞图像测速(CIV),将细胞层分割和图像测速算法相结合,以通过伤口愈合测定法大大增强细胞迁移的定量。生成的软件以自动化方式分析界面的速度以及细胞层内部的详细速度场。 CIV被证明对具有低信噪比,低对比度和移帧的图像具有很高的鲁棒性,并且可以在各种实验设置中移植。 CIV的模块化设计和参数化不仅限于伤口愈合检测,还允许在任何光学显微镜数据集中探索和量化流动现象。在这里,我们展示了在地形工程化表面上的伤口愈合试验中CIV的功能,并量化了细胞迁移过程中不同排列的光栅的相对优点。

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