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脑磁敏感加权磁共振成像的临床应用——图文综述

Clinical applications of susceptibility weighted MR imaging of the brain - a pictorial review.

作者信息

Thomas Bejoy, Somasundaram Sivaraman, Thamburaj Krishnamoorthy, Kesavadas Chandrasekharan, Gupta Arun Kumar, Bodhey Narendra K, Kapilamoorthy Tirur Raman

机构信息

Department of Imaging Sciences and Interventional Radiology, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Trivandrum, Kerala, India.

出版信息

Neuroradiology. 2008 Feb;50(2):105-16. doi: 10.1007/s00234-007-0316-z. Epub 2007 Oct 11.

Abstract

INTRODUCTION

Susceptibility-weighted imaging (SWI) is a novel magnetic resonance (MR) technique that exploits the magnetic susceptibility differences of various tissues, such as blood, iron and calcification. This pictorial review covers many clinical conditions illustrating its usefulness.

METHODS

SWI consists of using both magnitude and phase images from a high-resolution, three-dimensional fully velocity-compensated gradient echo sequence. Phase mask is created from the MR phase images, and multiplying these with the magnitude images increase the conspicuity of the smaller veins and other sources of susceptibility effects, which is depicted using minimal intensity projection (minIP).

RESULTS

The phase images are useful in differentiating between diamagnetic and paramagnetic susceptibility effects of calcium and blood, respectively. This unique MR sequence will help in detecting occult low flow vascular lesions, calcification and cerebral microbleed in various pathologic conditions and aids in characterizing tumors and degenerative diseases of the brain. This sequence also can be used to visualize normal brain structures with conspicuity.

CONCLUSION

Susceptibility-weighted imaging is useful in differentiating and characterizing diverse brain pathologies.

摘要

引言

磁敏感加权成像(SWI)是一种新型磁共振(MR)技术,它利用了各种组织(如血液、铁和钙化)的磁敏感性差异。本图像综述涵盖了许多临床情况,说明了其有用性。

方法

SWI包括使用来自高分辨率三维全速度补偿梯度回波序列的幅度和相位图像。从MR相位图像创建相位掩码,并将其与幅度图像相乘,可增加较小静脉和其他磁敏感性效应来源的可见性,使用最小强度投影(minIP)进行描绘。

结果

相位图像分别有助于区分钙和血液的抗磁性和顺磁性磁敏感性效应。这种独特的MR序列将有助于在各种病理情况下检测隐匿性低血流血管病变、钙化和脑微出血,并有助于对脑肿瘤和退行性疾病进行特征性描述。该序列还可用于清晰地显示正常脑结构。

结论

磁敏感加权成像有助于区分和特征化各种脑病变。

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