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Accurate morphology preserving segmentation of overlapping cells based on active contours.

机译:精确的形态学可以根据活动轮廓保留重叠细胞的分割。

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摘要

The identification of fluorescently stained cell nuclei is the basis of cell detection, segmentation, and feature extraction in high content microscopy experiments. The nuclear morphology of single cells is also one of the essential indicators of phenotypic variation. However, the cells used in experiments can lose their contact inhibition, and can therefore pile up on top of each other, making the detection of single cells extremely challenging using current segmentation methods. The model we present here can detect cell nuclei and their morphology even in high-confluency cell cultures with many overlapping cell nuclei. We combine the “gas of near circles” active contour model, which favors circular shapes but allows slight variations around them, with a new data model. This captures a common property of many microscopic imaging techniques: the intensities from superposed nuclei are additive, so that two overlapping nuclei, for example, have a total intensity that is approximately double the intensity of a single nucleus. We demonstrate the power of our method on microscopic images of cells, comparing the results with those obtained from a widely used approach, and with manual image segmentations by experts.
机译:荧光染色的细胞核的鉴定是高含量显微镜实验中细胞检测,分割和特征提取的基础。单细胞的核形态也是表型变异的重要指标之一。但是,实验中使用的细胞可能会失去接触抑制作用,因此会彼此堆积,这使得使用当前的分割方法检测单个细胞极具挑战性。我们这里介绍的模型甚至可以在具有许多重叠细胞核的高融合细胞培养物中检测细胞核及其形态。我们将新的数据模型结合了“接近圆形的气体”活动轮廓模型,该轮廓模型有利于圆形形状,但允许围绕它们的微小变化。这体现了许多显微成像技术的共同特性:叠加核的强度是累加的,因此,两个重叠核的总强度例如约为单个核强度的两倍。我们展示了我们的方法对细胞显微图像的威力,将结果与从广泛使用的方法获得的结果进行比较,并与专家进行的手动图像分割进行了比较。

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