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Multi-stage Association Analysis of Glioblastoma Gene Expressions with Texture and Spatial Patterns

机译:胶质母细胞瘤基因表达与纹理和空间模式的多阶段关联分析

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摘要

Glioblastoma is the most aggressive malignant primary brain tumor with a poor prognosis. Glioblastoma heterogeneous neuroimaging, pathologic, and molecular features provide opportunities for subclassification, prognostication, and the development of targeted therapies. Magnetic resonance imaging has the capability of quantifying specific phenotypic imaging features of these tumors. Additional insight into disease mechanism can be gained by exploring genetics foundations. Here, we use the gene expressions to evaluate the associations with various quantitative imaging phenomic features extracted from magnetic resonance imaging. We highlight a novel correlation by carrying out multi-stage genomewide association tests at the gene-level through a non-parametric correlation framework that allows testing multiple hypotheses about the integrated relationship of imaging phenotype-genotype more efficiently and less expensive computationally. Our result showed several novel genes previously associated with glioblastoma and other types of cancers, as the LRRC46 (chromosome 17), EPGN (chromosome 4) and TUBA1C (chromosome 12), all associated with our radiographic tumor features.
机译:胶质母细胞瘤是最具侵袭性的恶性原发性脑肿瘤,预后较差。胶质母细胞瘤的异质神经影像学,病理学和分子特征为亚分类,预后和靶向治疗的发展提供了机会。磁共振成像具有量化这些肿瘤的特定表型成像特征的能力。通过探索遗传学基础,可以获得对疾病机制的更多了解。在这里,我们使用基因表达来评估与从磁共振成像中提取的各种定量成像表象特征的关联。我们通过非参数相关框架在基因水平上进行多级全基因组关联测试,从而突出了一种新颖的相关性,该框架允许更有效地测试关于成像表型-基因型的整合关系的多个假设。我们的结果显示了以前与胶质母细胞瘤和其他类型的癌症相关的几个新基因,如LRRC46(17号染色​​体),EPGN(4号染色体)和TUBA1C(12号染色体),所有这些基因均与我们的放射影像学特征有关。

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