心脏计算机断层扫描放射组学:放射组学技术的全面综述。

Cardiac Computed Tomography Radiomics: A Comprehensive Review on Radiomic Techniques.

机构信息

MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center.

Department of Biophysics and Radiation Biology, Semmelweis University, Budapest, Hungary.

出版信息

J Thorac Imaging. 2018 Jan;33(1):26-34. doi: 10.1097/RTI.0000000000000268.

Abstract

Radiologic images are vast three-dimensional data sets in which each voxel of the underlying volume represents distinct physical measurements of a tissue-dependent characteristic. Advances in technology allow radiologists to image pathologies with unforeseen detail, thereby further increasing the amount of information to be processed. Even though the imaging modalities have advanced greatly, our interpretation of the images has remained essentially unchanged for decades. We have arrived in the era of precision medicine where even slight differences in disease manifestation are seen as potential target points for new intervention strategies. There is a pressing need to improve and expand the interpretation of radiologic images if we wish to keep up with the progress in other diagnostic areas. Radiomics is the process of extracting numerous quantitative features from a given region of interest to create large data sets in which each abnormality is described by hundreds of parameters. From these parameters datamining is used to explore and establish new, meaningful correlations between the variables and the clinical data. Predictive models can be built on the basis of the results, which may broaden our knowledge of diseases and assist clinical decision making. Radiomics is a complex subject that involves the interaction of different disciplines; our objective is to explain commonly used radiomic techniques and review current applications in cardiac computed tomography imaging.

摘要

放射图像是庞大的三维数据集,其中体积的每个体素都代表组织相关特征的独特物理测量值。技术的进步使放射科医生能够以前所未有的细节成像病变,从而进一步增加了需要处理的信息量。尽管成像方式有了很大的进步,但几十年来,我们对图像的解释基本上没有变化。我们已经进入了精准医疗时代,即使疾病表现出细微的差异,也被视为新干预策略的潜在目标点。如果我们希望跟上其他诊断领域的进展,就迫切需要改进和扩展对放射图像的解释。放射组学是从给定的感兴趣区域中提取大量定量特征的过程,以创建大型数据集,其中每个异常都由数百个参数描述。通过对这些参数进行数据挖掘,可以探索和建立变量与临床数据之间新的、有意义的相关性。可以根据结果构建预测模型,从而拓宽我们对疾病的认识并辅助临床决策。放射组学是一个涉及多个学科相互作用的复杂课题;我们的目标是解释常用的放射组学技术,并回顾当前在心脏计算机断层扫描成像中的应用。

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