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Radiomics in Glioblastoma: Current Status and Challenges Facing Clinical Implementation

机译:胶质母细胞瘤中的放射学:临床现状和面临的挑战

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摘要

Radiomics analysis has had remarkable progress along with advances in medical imaging, most notability in central nervous system malignancies. Radiomics refers to the extraction of a large number of quantitative features that describe the intensity, texture and geometrical characteristics attributed to the tumor radiographic data. These features have been used to build predictive models for diagnosis, prognosis, and therapeutic response. Such models are being combined with clinical, biological, genetics and proteomic features to enhance reproducibility. Broadly, the four steps necessary for radiomic analysis are: (1) image acquisition, (2) segmentation or labeling, (3) feature extraction, and (4) statistical analysis. Major methodological challenges remain prior to clinical implementation. Essential steps include: adoption of an optimized standard imaging process, establishing a common criterion for performing segmentation, fully automated extraction of radiomic features without redundancy, and robust statistical modeling validated in the prospective setting. This review walks through these steps in detail, as it pertains to high grade gliomas. The impact on precision medicine will be discussed, as well as the challenges facing clinical implementation of radiomic in the current management of glioblastoma.
机译:随着医学成像的发展,放射组学分析取得了显着进展,其中以中枢神经系统恶性肿瘤最为明显。放射线学是指大量定量特征的提取,这些定量特征描述了归因于肿瘤射线照相数据的强度,质地和几何特征。这些功能已用于建立诊断,预后和治疗反应的预测模型。此类模型与临床,生物学,遗传学和蛋白质组学功能相结合,以增强可重复性。概括地说,放射分析的四个步骤是:(1)图像采集,(2)分割或标记,(3)特征提取和(4)统计分析。在临床实施之前,主要的方法学挑战仍然存在。基本步骤包括:采用优化的标准成像过程,建立执行分割的通用标准,放射学特征的全自动提取而无冗余,以及在预期环境中经过验证的可靠统计模型。这篇综述详细地介绍了这些步骤,因为它与高级神经胶质瘤有关。将讨论对精密医学的影响,以及胶质母细胞瘤当前治疗中放射学的临床实施面临的挑战。

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