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Clinical applications of susceptibility-weighted imaging in detecting and grading intracranial gliomas: a review

机译:磁敏感加权成像在颅内神经胶质瘤检测和分级中的临床应用

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摘要

Susceptibility-weighted imaging (SWI) is a technique that exploits the susceptibility difference between tissues to provide contrast for different regions of the brain. In essence, it uses the deoxygenated hemoglobin of veins, hemosiderin of hemorrhage, etc. as intrinsic contrast agents, allowing for much better visualization of blood and microvessels even without administration of an external contrast agent. It is a fast-evolving field that is being constantly improved and increasingly implemented with updates in relevant technology. Multiple studies have been done on the role of SWI in the management of various neurologic disorders and it is also being seen as a further step in the neuroradiologist’s goal of being able to noninvasively grade tumors in order to influence therapy. This article briefly reviews the evolution of SWI since its conception and provides the reader with a comprehensive summary of various studies that have been done on its application for detecting and grading intraaxial brain tumors, specifically gliomas. Other useful magnetic resonance techniques that have shown promise in grading gliomas are also discussed.
机译:磁化率加权成像(SWI)是一种利用组织之间的磁化率差异为大脑不同区域提供对比度的技术。本质上,它使用静脉的脱氧血红蛋白,出血的铁血黄素等作为内在的造影剂,即使不使用外部造影剂也可以使血液和微血管的可视化更好。这是一个快速发展的领域,随着相关技术的更新,它正在不断改进和实现。关于SWI在控制各种神经系统疾病中的作用,已经进行了多项研究,这也被视为神经放射学家能够无创地分级肿瘤以影响治疗的目标的又一步。本文简要回顾了自SWI诞生以来的发展趋势,并向读者提供了有关SWI在检测和分级轴内脑肿瘤(特别是神经胶质瘤)中的应用的各种研究的综合摘要。还讨论了在胶质瘤分级中显示出希望的其他有用的磁共振技术。

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