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扩散加权成像和灌注加权成像在脑肿瘤鉴别诊断中的作用:综述与未来展望

The role of diffusion and perfusion weighted imaging in the differential diagnosis of cerebral tumors: a review and future perspectives.

作者信息

Svolos Patricia, Kousi Evanthia, Kapsalaki Eftychia, Theodorou Kyriaki, Fezoulidis Ioannis, Kappas Constantin, Tsougos Ioannis

出版信息

Cancer Imaging. 2014 Apr 29;14(1):20. doi: 10.1186/1470-7330-14-20.

Abstract

The role of conventional Magnetic Resonance Imaging (MRI) in the detection of cerebral tumors has been well established. However its excellent soft tissue visualization and variety of imaging sequences are in many cases non-specific for the assessment of brain tumor grading. Hence, advanced MRI techniques, like Diffusion-Weighted Imaging (DWI), Diffusion Tensor Imaging (DTI) and Dynamic-Susceptibility Contrast Imaging (DSCI), which are based on different contrast principles, have been used in the clinical routine to improve diagnostic accuracy. The variety of quantitative information derived from these techniques provides significant structural and functional information in a cellular level, highlighting aspects of the underlying brain pathophysiology. The present work, reviews physical principles and recent results obtained using DWI/DTI and DSCI, in tumor characterization and grading of the most common cerebral neoplasms, and discusses how the available MR quantitative data can be utilized through advanced methods of analysis, in order to optimize clinical decision making.

摘要

传统磁共振成像(MRI)在脑肿瘤检测中的作用已得到充分确立。然而,其出色的软组织可视化能力和多样的成像序列在许多情况下对于脑肿瘤分级评估并不具有特异性。因此,基于不同对比原理的先进MRI技术,如扩散加权成像(DWI)、扩散张量成像(DTI)和动态磁敏感对比成像(DSCI),已被应用于临床常规检查以提高诊断准确性。这些技术所获得的各种定量信息在细胞水平上提供了重要的结构和功能信息,突出了潜在脑病理生理学的各个方面。本研究回顾了使用DWI/DTI和DSCI在最常见脑肿瘤的肿瘤特征描述和分级方面的物理原理及最新成果,并讨论了如何通过先进的分析方法利用现有的MR定量数据,以优化临床决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8527/4331825/da509a77f351/1470-7330-14-20-1.jpg

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