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利用 3.0T FLAIR 与 7.0T SWI 相位融合分析多发性硬化病变:FLAIR-SWI。

Analysis of multiple sclerosis lesions using a fusion of 3.0 T FLAIR and 7.0 T SWI phase: FLAIR SWI.

机构信息

Medical University of Vienna, Department of Radiology, Vienna, Austria.

出版信息

J Magn Reson Imaging. 2011 Mar;33(3):543-9. doi: 10.1002/jmri.22452.

Abstract

PURPOSE

To improve multiple sclerosis (MS) research by introducing a new type of contrast, namely, the combination of fluid-attenuated inversion recovery (FLAIR) data acquired at 3.0 T and 7.0 T susceptibility-weighted imaging (SWI) phase data. The approach of this new contrast is whole-brain coverage with 3.0 T-FLAIR data for lesion detection--currently limited at 7.0 T due to specific absorption rate (SAR) limits--overlaid with high-resolution, small vessel, and iron-related 7.0 T SWI contrast. Lesion analysis in terms of penetrating veins and local iron depositions were performed.

MATERIALS AND METHODS

Data from 10 MS patients were acquired at 3.0 T and at 7.0 T. FLAIR data, acquired at 3.0 T, were registered to 7.0 T SWI phase data and SWI image processing was performed using 3.0 T FLAIR data instead of SWI magnitude data.

RESULTS

A total of 299 MS plaques were detected in eight MS patients. Penetrating veins were found in 75 MS plaques, iron depositions in 48 MS plaques, and veins accompanied with iron depositions in 44 MS plaques.

CONCLUSION

FLAIR-SWI provides radiologically known, hyperintense definition of MS lesions overlaid with high-resolution visualization of iron deposits and venous blood vessels and offers new insights into MS lesions.

摘要

目的

通过引入一种新型对比剂,即 3.0T 和 7.0T 磁化率加权成像(SWI)相位数据的液体衰减反转恢复(FLAIR)数据组合,来改善多发性硬化症(MS)的研究。这种新对比剂的方法是用 3.0T-FLAIR 数据进行全脑覆盖,用于检测病变——目前由于特定吸收率(SAR)限制,在 7.0T 时受到限制——叠加高分辨率、小血管和与铁相关的 7.0T SWI 对比。对穿透静脉和局部铁沉积进行了病变分析。

材料和方法

对 10 名 MS 患者在 3.0T 和 7.0T 下采集数据。在 3.0T 下采集的 FLAIR 数据被注册到 7.0T SWI 相位数据上,并使用 3.0T FLAIR 数据而不是 SWI 幅度数据来进行 SWI 图像处理。

结果

在 8 名 MS 患者中总共检测到 299 个 MS 斑块。在 75 个 MS 斑块中发现了穿透静脉,在 48 个 MS 斑块中发现了铁沉积,在 44 个 MS 斑块中发现了伴有铁沉积的静脉。

结论

FLAIR-SWI 为 MS 病变提供了放射学上已知的高信号定义,叠加了铁沉积和静脉血管的高分辨率可视化,为 MS 病变提供了新的见解。

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