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使用 7T 动脉自旋标记和磁化传递技术对人体血脑屏障通透性的非对比评估。

Non-contrast estimate of blood-brain barrier permeability in humans using arterial spin labeling and magnetization transfer at 7 T.

机构信息

Department of Electrical and Computer Engineering, Auburn University, Auburn, Alabama, USA.

Auburn University MRI Research Center, Auburn University, Auburn, Alabama, USA.

出版信息

NMR Biomed. 2023 Jul;36(7):e4908. doi: 10.1002/nbm.4908. Epub 2023 Jan 29.

Abstract

Blood-brain barrier (BBB) dysfunction is associated with a number of central nervous system diseases. This study demonstrates the application of a novel noninvasive technique to measure the BBB permeability in the human brain at 7 T. The technique exploits the fact that, when tissue macromolecules are saturated by off-resonance RF pulse, the intravascular and the extravascular (tissue) water experience different magnetization transfer effects. This principle was combined with arterial spin labeling to distinguish between the intravascular and the tissue water, and was used to calculate perfusion, water extraction fraction (E), and BBB permeability surface area product for water (PS). Simultaneous coregistered magnetization transfer ratio maps were also generated that can provide valuable additional information. Eighteen healthy volunteers (seven females), age = 27 ± 11 years and weight = 65 ± 9 kg, participated in the study. Average perfusion was 67 ± 5 and 29 ± 4 ml/100 g/min (p < 0.05); and E was 0.921 ± 0.025 and 0.962 ± 0.015 (p < 0.05) in the gray matter (GM) and the white matter (WM), respectively. PS was higher in the GM (171 ± 20 ml/100 g/min) compared with the WM (95 ± 18 ml/100 g/min) (p < 0.05). The parameters exhibited good reliability with test re-test experiments. The sensitivity of this technique was demonstrated by 200 mg caffeine intake, which resulted in a decrease in the resting PS by ~31%.

摘要

血脑屏障(BBB)功能障碍与许多中枢神经系统疾病有关。本研究展示了一种新的无创技术在 7T 下测量人脑 BBB 通透性的应用。该技术利用了这样一个事实,即当组织中的大分子被离共振射频脉冲饱和时,血管内和血管外(组织)水经历不同的磁化转移效应。这一原理与动脉自旋标记相结合,以区分血管内和组织水,并用于计算灌注、水提取分数(E)和水的 BBB 通透性表面积产物(PS)。同时生成了同步配准的磁化转移率图,可提供有价值的附加信息。18 名健康志愿者(7 名女性),年龄=27±11 岁,体重=65±9kg,参与了这项研究。平均灌注分别为 67±5 和 29±4ml/100g/min(p<0.05);E 在灰质(GM)和白质(WM)中分别为 0.921±0.025 和 0.962±0.015(p<0.05)。PS 在 GM 中较高(171±20ml/100g/min),而在 WM 中较低(95±18ml/100g/min)(p<0.05)。通过测试重测实验,参数显示出良好的可靠性。该技术的敏感性通过 200mg 咖啡因摄入得到了证明,这导致静息 PS 下降约 31%。

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