Coordinates in low-dimensional cell shape-space discriminate migration dynamics from single static cell images

Xiuxiu He, Kuangcai Chen, Ning Fang, Yi Jiang
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引用次数: 0

Abstract

Cell shape has long been used to discern cell phenotypes and states, but the underlying premise has not been quantitatively tested. Here, we show that a single cell image can be used to discriminate its migration behavior by analyzing a large number of cell migration data in vitro. We analyzed a large number of two-dimensional cell migration images over time and found that the cell shape variation space has only six dimensions, and migration behavior can be determined by the coordinates of a single cell image in this 6-dimensional shape-space. We further show that this is possible because persistent cell migration is characterized by spatial-temporally coordinated protrusion and contraction, and a distribution signature in the shape-space. Our findings provide a quantitative underpinning for using cell morphology to differentiate cell dynamical behavior.
低维细胞形状空间的坐标区分了单个静态细胞图像的动态迁移
细胞形状长期以来被用来辨别细胞表型和状态,但其基本前提尚未被定量测试。在这里,我们通过分析大量体外细胞迁移数据,证明单细胞图像可以用来区分其迁移行为。我们分析了大量随时间变化的二维细胞迁移图像,发现细胞形状变化空间只有六个维度,并且迁移行为可以通过单个细胞图像在这个6维形状空间中的坐标来确定。我们进一步表明,这是可能的,因为持续的细胞迁移以时空协调的突起和收缩为特征,并且在形状空间中具有分布特征。我们的发现为使用细胞形态学来区分细胞动力学行为提供了定量基础。
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