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Segmentation of 3D cell membrane images by PDE methods and its applications.

机译:通过PDE方法分割3D细胞膜图像及其应用。

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摘要

We present a set of techniques that enable us to segment objects from 3D cell membrane images. Particularly, we propose methods for detection of approximate cell nuclei centers, extraction of the inner cell boundaries, the surface of the organism and the intercellular borders--the so called intercellular skeleton. All methods are based on numerical solution of partial differential equations. The center detection problem is represented by a level set equation for advective motion in normal direction with curvature term. In case of the inner cell boundaries and the global surface, we use the generalized subjective surface model. The intercellular borders are segmented by the advective level set equation where the velocity field is given by the gradient of the signed distance function to the segmented inner cell boundaries. The distance function is computed by solving the time relaxed eikonal equation. We describe the mathematical models, explain their numerical approximation and finally we present various possible practical applications on the images of zebrafish embryogenesis--computation of important quantitative characteristics, evaluation of the cell shape, detection of cell divisions and others.
机译:我们提出了一套技术,使我们能够从3D细胞膜图像中分割对象。特别是,我们提出了用于检测近似细胞核中心,提取内部细胞边界,生物体表面和细胞间边界(即所谓的细胞间骨架)的方法。所有方法都基于偏微分方程的数值解。中心检测问题由具有对角线项的法向运动的水平运动方程表示。在内部细胞边界和整体表面的情况下,我们使用广义主观表面模型。通过对流水平集方程对细胞间边界进行分割,其中速度场由有符号距离函数到分段的内部细胞边界的梯度给出。距离函数是通过求解时间松弛电子方程来计算的。我们描述数学模型,解释它们的数值近似,最后在斑马鱼胚胎发生的图像上提出各种可能的实际应用-重要的定量特征的计算,细胞形状的评估,细胞分裂的检测等。

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