Elshafeey Nabil, Hassan Islam, Zinn Pascal O, Colen Rivka R
*Department of Diagnostic Radiology, Neuroimaging Section, The University of Texas, MD Anderson Cancer Center †Department of Neurosurgery, Baylor College of Medicine ‡Department of Cancer System Imaging, The University of Texas, MD Anderson Cancer Center, Houston, TX.
Top Magn Reson Imaging. 2017 Feb;26(1):33-41. doi: 10.1097/RMR.0000000000000114.
Radiogenomics is a relatively new and exciting field within radiology that links different imaging features with diverse genomic events. Genomics advances provided by the Cancer Genome Atlas and the Human Genome Project have enabled us to harness and integrate this information with noninvasive imaging phenotypes to create a better 3-dimensional understanding of tumor behavior and biology. Beyond imaging-histopathology, imaging genomic linkages provide an important layer of complexity that can help in evaluating and stratifying patients into clinical trials, monitoring treatment response, and enhancing patient outcomes. This article reviews some of the important radiogenomic literatures in brain tumors.
放射基因组学是放射学领域中一个相对较新且令人兴奋的领域,它将不同的成像特征与多样的基因组事件联系起来。癌症基因组图谱和人类基因组计划所取得的基因组学进展,使我们能够利用这些信息并将其与非侵入性成像表型相结合,从而对肿瘤行为和生物学有更深入的三维理解。除了成像 - 组织病理学联系外,成像基因组关联提供了一个重要的复杂层面,有助于评估患者并将其分层纳入临床试验、监测治疗反应以及改善患者预后。本文综述了一些脑肿瘤方面重要的放射基因组学文献。