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Deformable Models for Segmentation of CLSM Tissue Images and Its Application in FISH Signal Analysis

机译:CLSM组织图像分割的可变形模型及其在FISH信号分析中的应用

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摘要

In this paper we present an application of deformable models for the segmentation of volumetric tissue images. The three‐dimensional images are obtained using confocal microscope. The segmented images have been used for the quantitative analysis of the Fluorescence In Situ Hybridization (FISH) signals. An ellipsoidal surface initialized around the cell of interest acts as a deformable model. The deformable model surface voxels are subjected to various internal and external forces derived from underlying image features as well as externally imposed constraints. The deformable model converges to the optimum cell shape when the vector sum of all the forces acting on the model is zero. The result of segmentation is used to confirm the cell membership of the FISH signals and to reject all the signals that lie outside the cell nuclei. Three‐dimensional region isolation and labeling technique is used to label and count the FISH signals per cell nucleus. A simple study on the effect of different segmentation methods over a quantitative analysis of FISH signals is also presented.
机译:在本文中,我们提出了变形模型在体积组织图像分割中的应用。使用共聚焦显微镜获得三维图像。分割的图像已用于荧光原位杂交(FISH)信号的定量分析。在目标细胞周围初始化的椭球表面充当可变形模型。可变形的模型表面体素承受来自基础图像特征以及外部施加的约束的各种内部和外部力。当作用在模型上的所有力的矢量和为零时,可变形模型收敛到最佳单元形状。分割的结果用于确认FISH信号的细胞成员身份,并拒绝位于细胞核外部的所有信号。三维区域隔离和标记技术用于标记和计数每个细胞核的FISH信号。还提供了有关不同分割方法对FISH信号进行定量分析的效果的简单研究。

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