DEIS, Bologna University, 40136 Bologna, Italy.
IEEE Trans Image Process. 2010 Mar;19(3):770-81. doi: 10.1109/TIP.2009.2033629. Epub 2009 Oct 6.
We designed a strategy for extracting the shapes of cell membranes and nuclei from time lapse confocal images taken throughout early zebrafish embryogenesis using a partial-differential-equation-based segmentation. This segmentation step is a prerequisite for an accurate quantitative analysis of cell morphodynamics during embryogenesis and it is the basis for an integrated understanding of biological processes. The segmentation of embryonic cells requires live zebrafish embryos fluorescently labeled to highlight sub-cellular structures and designing specific algorithms by adapting classical methods to image features. Our strategy includes the following steps: the signal-to-noise ratio is first improved by an edge-preserving filtering, then the cell shape is reconstructed applying a fully automated algorithm based on a generalized version of the Subjective Surfaces technique. Finally we present a procedure for the algorithm validation either from the accuracy and the robustness perspective.
我们设计了一种策略,用于通过基于偏微分方程的分割,从整个早期斑马鱼胚胎发生过程中的延时共聚焦图像中提取细胞膜和细胞核的形状。这种分割步骤是对胚胎发生过程中细胞形态动力学进行准确定量分析的前提,也是对生物过程进行综合理解的基础。胚胎细胞的分割需要对活的斑马鱼胚胎进行荧光标记,以突出亚细胞结构,并通过适应经典方法的图像特征来设计特定的算法。我们的策略包括以下步骤:首先通过边缘保持滤波来提高信噪比,然后应用基于主观曲面技术的广义版本的全自动算法来重建细胞形状。最后,我们提出了一种从准确性和鲁棒性角度验证算法的过程。