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Integrating Radio Imaging With Gene Expressions Toward a Personalized Management of Cancer

机译:将放射成像与基因表达相结合以实现癌症的个性化管理

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Radiographic-imaging modalities like computerized tomography, positron emission tomography, and magnetic resonance imaging are playing a major role in the diagnosis and prognosis of cancer. Gene and protein expression patterns, from the tumor genome, are seen to facilitate individualized selection of therapies. Along with breakthroughs in biotechnology, applicable within cancer radiation biology, a new research field called Radiogenomics has been born in radiation oncology. Associating genotypes with imaging phenotypes holds promise for personalized optimal treatment. Segmentation and feature selection from the region of interest in an image are followed by correlation with the gene expression profile of the tumor in order to determine its noninvasive surrogates. This paper highlights the roles of quantitative imaging, genomics, and radiogenomics for a patient-specific tumor management.
机译:诸如计算机断层扫描,正电子发射断层扫描和磁共振成像之类的放射成像模式在癌症的诊断和预后中起着重要作用。观察到来自肿瘤基因组的基因和蛋白质表达模式有助于个体化治疗选择。随着生物技术的突破(可应用于癌症放射生物学),放射肿瘤学中诞生了一个新的研究领域,称为 Radiogenomics 。将基因型与成像表型相关联有望实现个性化的最佳治疗。从图像中感兴趣的区域进行分割和特征选择,然后与肿瘤的基因表达谱相关联,以确定其非侵入性替代物。本文重点介绍了定量成像,基因组学和放射基因组学在特定于患者的肿瘤治疗中的作用。

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