首页> 外文会议>Seventh Canadian Conference on Computer and Robot Vision (CRV 2010) >An Accurate Image Processing Algorithm for Detecting FISH Probe Locations Relative to Chromosome Landmarks on DAPI Stained Metaphase Chromosome Images
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An Accurate Image Processing Algorithm for Detecting FISH Probe Locations Relative to Chromosome Landmarks on DAPI Stained Metaphase Chromosome Images

机译:一种精确的图像处理算法,用于检测相对于DAPI染色的中期染色体图像上的染色体地标的FISH探针位置

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With the increasing use of Fluorescence In Situ Hybridization (FISH) probes as markers for certain genetic sequences, the requirement of a proper image processing framework is becoming a necessity to accurately detect these probe signal locations in relation to the centerline of the chromosome. Although many image processing techniques have been developed for chromosomal analysis, they fail to provide reliable results in segmenting and extracting the centerline of chromosomes due to the high variability in shape of chromosomes on microscope slides. In this paper we propose a hybrid algorithm that utilizes Gradient Vector Flow active contours, Discrete Curve Evolution based skeleton pruning and morphological thinning to provide a robust and accurate centerline of the chromosome, which is then used for the measurement of the FISH probe signals. The ability to accurately detect FISH probe locations with respective to the centerline and other landmarks can provide the cytogeneticists with detailed information that could lead to a faster diagnosis.
机译:随着荧光原位杂交(FISH)探针作为某些基因序列的标记物的使用的增加,对正确的图像处理框架的要求正成为准确检测这些探针信号相对于染色体中心线的必要性。尽管已开发出许多用于染色体分析的图像处理技术,但是由于显微镜载玻片上染色体形状的高度可变性,它们未能在分割和提取染色体中心线方面提供可靠的结果。在本文中,我们提出了一种混合算法,该算法利用梯度矢量流活动轮廓,基于离散曲线演化的骨架修剪和形态学细化来提供染色体的鲁棒且准确的中心线,然后将其用于FISH探针信号的测量。准确检测与中心线和其他界标相对应的FISH探针位置的能力可以为细胞遗传学家提供详细的信息,从而可以加快诊断速度。

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