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CT纹理分析:定义、应用、生物学关联及挑战

CT Texture Analysis: Definitions, Applications, Biologic Correlates, and Challenges.

作者信息

Lubner Meghan G, Smith Andrew D, Sandrasegaran Kumar, Sahani Dushyant V, Pickhardt Perry J

机构信息

From the Department of Radiology, University of Wisconsin School of Medicine and Public Health, E3/311 Clinical Sciences Center, 600 Highland Ave, Madison, WI 35792 (M.G.L., P.J.P.); Department of Radiology, University of Mississippi Medical Center, Jackson, Miss (A.D.S.); Department of Radiology, Indiana University School of Medicine, Indianapolis, Ind (K.S.); and Department of Radiology, Harvard Medical School, Boston, Mass (D.V.S.).

出版信息

Radiographics. 2017 Sep-Oct;37(5):1483-1503. doi: 10.1148/rg.2017170056.

Abstract

This review discusses potential oncologic and nononcologic applications of CT texture analysis ( CTTA CT texture analysis ), an emerging area of "radiomics" that extracts, analyzes, and interprets quantitative imaging features. CTTA CT texture analysis allows objective assessment of lesion and organ heterogeneity beyond what is possible with subjective visual interpretation and may reflect information about the tissue microenvironment. CTTA CT texture analysis has shown promise in lesion characterization, such as differentiating benign from malignant or more biologically aggressive lesions. Pretreatment CT texture features are associated with histopathologic correlates such as tumor grade, tumor cellular processes such as hypoxia or angiogenesis, and genetic features such as KRAS or epidermal growth factor receptor (EGFR) mutation status. In addition, and likely as a result, these CT texture features have been linked to prognosis and clinical outcomes in some tumor types. CTTA CT texture analysis has also been used to assess response to therapy, with decreases in tumor heterogeneity generally associated with pathologic response and improved outcomes. A variety of nononcologic applications of CTTA CT texture analysis are emerging, particularly quantifying fibrosis in the liver and lung. Although CTTA CT texture analysis seems to be a promising imaging biomarker, there is marked variability in methods, parameters reported, and strength of associations with biologic correlates. Before CTTA CT texture analysis can be considered for widespread clinical implementation, standardization of tumor segmentation and measurement techniques, image filtration and postprocessing techniques, and methods for mathematically handling multiple tumors and time points is needed, in addition to identification of key texture parameters among hundreds of potential candidates, continued investigation and external validation of histopathologic correlates, and structured reporting of findings. RSNA, 2017.

摘要

本综述讨论了CT纹理分析(CTTA)在肿瘤学和非肿瘤学方面的潜在应用,CTTA是“放射组学”这一新兴领域,用于提取、分析和解释定量成像特征。CTTA能够客观评估病变和器官的异质性,这是主观视觉解读无法做到的,并且可能反映有关组织微环境的信息。CTTA在病变特征描述方面已显示出前景,比如区分良性与恶性病变或生物学行为更具侵袭性的病变。治疗前的CT纹理特征与组织病理学相关因素有关,如肿瘤分级、肿瘤细胞过程(如缺氧或血管生成)以及基因特征(如KRAS或表皮生长因子受体(EGFR)突变状态)。此外,可能正因如此,这些CT纹理特征在某些肿瘤类型中已与预后和临床结局相关联。CTTA还被用于评估治疗反应,肿瘤异质性的降低通常与病理反应及改善的结局相关。CTTA的各种非肿瘤学应用正在兴起,尤其是对肝脏和肺部纤维化进行量化。尽管CTTA似乎是一种很有前景的成像生物标志物,但在方法、报告的参数以及与生物学相关因素的关联强度方面存在显著差异。在CTTA能够被考虑广泛应用于临床之前,除了要从数百个潜在候选参数中识别关键纹理参数、持续研究并进行组织病理学相关因素的外部验证以及结构化报告研究结果外,还需要对肿瘤分割和测量技术、图像过滤和后处理技术以及处理多个肿瘤和时间点的数学方法进行标准化。RSNA,2017年。

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