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使用 7T 铁葡聚糖增强多回波 3D 梯度回波 MRI 对动脉和静脉血管成像。

Imaging arterial and venous vessels using Iron Dextran enhanced multi-echo 3D gradient echo MRI at 7T.

机构信息

F.M. Kirby Research Center for Functional Brain Imaging, Kennedy Krieger Institute, Baltimore, Maryland, USA.

Division of MRI Research, Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

出版信息

NMR Biomed. 2024 Dec;37(12):e5251. doi: 10.1002/nbm.5251. Epub 2024 Aug 26.

Abstract

Iron Dextran is a widely used iron oxide compound to treat iron-deficiency anemia patients in the clinic. Similar to other iron oxide compounds such as Ferumoxytol, it can also be used off-label as an intravascular magnetic resonance imaging (MRI) contrast agent due to its strong iron-induced T2 and T2* shortening effects. In this study, we seek to evaluate the feasibility of using Iron Dextran enhanced multi-echo susceptibility weighted imaging (SWI) MRI at 7T to image arterial and venous blood vessels in the human brain. Phantom experiments were performed to measure the r2* relaxivity for Iron Dextran in blood, based on which the SWI sequence was optimized. Pre- and post-infusion MR images were acquired in human subjects from which maps of arteries and veins were extracted. The post-contrast SWI images showed enhanced susceptibility difference between blood and the surrounding tissue in both arteries and veins. Our results showed that the proposed Iron Dextran enhanced multi-echo SWI approach allowed the visualization of blood vessels with diameters down to ~100 μm, including small blood vessels supplying and draining small brain structures such as the hippocampus. We conclude that Iron Dextran can be an alternative iron-based MRI contrast agent for blood vessel imaging in the human brain.

摘要

铁葡聚糖是一种广泛应用于临床的氧化铁复合物,用于治疗缺铁性贫血患者。与其他氧化铁复合物(如 Ferumoxytol)类似,由于其强烈的铁诱导 T2 和 T2缩短效应,它也可以被超适应证用作血管内磁共振成像(MRI)对比剂。在这项研究中,我们旨在评估使用 7T 下铁葡聚糖增强多回波磁化率加权成像(SWI)MRI 来对人脑的动脉和静脉血管成像的可行性。通过进行体模实验来测量血液中铁葡聚糖的 r2弛豫率,基于此对 SWI 序列进行了优化。在人类受试者中进行了预输注和输注后磁共振成像,从中提取了动脉和静脉的图。对比后 SWI 图像显示,血液与周围组织之间的磁化率差异在动脉和静脉中均增强。我们的结果表明,所提出的铁葡聚糖增强多回波 SWI 方法可用于可视化直径低至~100μm 的血管,包括为如海马体等小脑结构供血和引流的小血管。我们得出结论,铁葡聚糖可以作为一种替代的基于铁的 MRI 对比剂,用于人脑的血管成像。

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