首页> 外文会议>International symposium on advances in visual computing;ISVC 2009 >Segmentation of Neural Stem/Progenitor Cells Nuclei within 3-D Neurospheres
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Segmentation of Neural Stem/Progenitor Cells Nuclei within 3-D Neurospheres

机译:3-D神经球内神经干/祖细胞核的分段

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Neural stem cells derived from both embryonic and adult brain can be cultured as neurospheres; a free floating 3-D aggregate of cells. Neurospheres represent a heterogenous mix of cells including neural stem and progenitor cells. In order to investigate the self-renewal, growth and differentiation of cells within neurospheres, it is crucial that individual nuclei are accurately identified using image segmentation. Hence effective segmentation algorithm is indispensible for microscopy based neural stem cell studies. In this paper, we present a seed finding approach in scale space to identify the center of nuclei in 3-D. Then we present a novel segmentation approach, called "Evolving Generalized Voronoi Diagram", which uses the identified centers to segment nuclei in neurospheres. Comparison of our computational results to mannually annotated ground truth demonstrates that the proposed approach is an efficient and accurate segmentation approach for 3-D neurospheres.
机译:可将源自胚胎和成年大脑的神经干细胞培养为神经球。单元格的自由浮动3D聚合。神经球代表细胞的异质混合,包括神经干细胞和祖细胞。为了研究神经球内细胞的自我更新,生长和分化,使用图像分割准确识别单个细胞核至关重要。因此,有效的分割算法对于基于显微镜的神经干细胞研究是必不可少的。在本文中,我们提出了一种在尺度空间中寻找种子的方法,以识别3-D原子核的中心。然后,我们提出了一种新颖的分割方法,称为“进化的广义Voronoi图”,该方法使用已识别的中心分割神经球中的核。我们的计算结果与人工注释的地面真实情况的比较表明,该方法是针对3-D神经球的有效且准确的分割方法。

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