首页> 外文会议>IAPR International Workshop on Pattern Recognition in Bioinformatics(PRIB 2007); 20071001-02; Singapore(SG) >Integrating Gene Expression Data from Microarrays Using the Self-Organising Map and the Gene Ontology
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Integrating Gene Expression Data from Microarrays Using the Self-Organising Map and the Gene Ontology

机译:使用自组织图和基因本体整合来自微阵列的基因表达数据

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The self-organizing map (SOM) is useful within bioinformat-ics research because of its clustering and visualization capabilities. The SOM is a vector quantization method that reduces the dimensionality of original measurement and visualizes individual tumor sample in a SOM component plane. The data is taken from cDNA microarray experiments on Diffuse Large B-Cell Lymphoma (DLBCL) data set of Alizadeh. The objective is to get the SOM to discover biologically meaningful clusters of genes that are active in this particular form of cancer. Despite their powers of visualization, SOMs cannot provide a full explanation of their structure and composition without further detailed analysis. The only method to have gone someway towards filling this gap is the unified distance matrix or U-matrix technique. This method will be used to provide a better understanding of the nature of discovered gene clusters. We enhance the work of previous researchers by integrating the clustering results with the Gene Ontology for deeper analysis of biological meaning, identification of diversity in gene expression of the DLBCL tumors and reflecting the variations in tumor growth rate.
机译:自组织图(SOM)由于具有聚类和可视化功能,因此在生物信息学研究中非常有用。 SOM是一种矢量量化方法,可减少原始测量的维数并在SOM组件平面中可视化单个肿瘤样本。数据取自Alizadeh的弥漫性大B细胞淋巴瘤(DLBCL)数据集的cDNA微阵列实验。目的是使SOM能够发现在这种特殊形式的癌症中活跃的具有生物学意义的基因簇。尽管SOM具有可视化功能,但如果不进行进一步的详细分析,则无法提供对其结构和组成的完整说明。填补这一空白的唯一方法是统一的距离矩阵或U矩阵技术。该方法将用于更好地了解发现的基因簇的性质。我们通过将聚类结果与基因本体论相结合,以进一步深入地分析生物学意义,识别DLBCL肿瘤的基因表达多样性并反映肿瘤生长速率的变化,从而增强了先前研究人员的工作。

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