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0.05T 超低场磁共振血管成像:初步研究。

Ultra-low-field magnetic resonance angiography at 0.05 T: A preliminary study.

机构信息

Laboratory of Biomedical Imaging and Signal Processing, The University of Hong Kong, Hong Kong SAR, People's Republic of China.

Department of Electrical and Electronic Engineering, The University of Hong Kong, Hong Kong SAR, People's Republic of China.

出版信息

NMR Biomed. 2024 Nov;37(11):e5213. doi: 10.1002/nbm.5213. Epub 2024 Jul 20.

Abstract

We aim to explore the feasibility of head and neck time-of-flight (TOF) magnetic resonance angiography (MRA) at ultra-low-field (ULF). TOF MRA was conducted on a highly simplified 0.05 T MRI scanner with no radiofrequency (RF) and magnetic shielding. A flow-compensated three-dimensional (3D) gradient echo (GRE) sequence with a tilt-optimized nonsaturated excitation RF pulse, and a flow-compensated multislice two-dimensional (2D) GRE sequence, were implemented for cerebral artery and vein imaging, respectively. For carotid artery and jugular vein imaging, flow-compensated 2D GRE sequences were utilized with venous and arterial blood presaturation, respectively. MRA was performed on young healthy subjects. Vessel-to-background contrast was experimentally observed with strong blood inflow effect and background tissue suppression. The large primary cerebral arteries and veins, carotid arteries, jugular veins, and artery bifurcations could be identified in both raw GRE images and maximum intensity projections. The primary brain and neck arteries were found to be reproducible among multiple examination sessions. These preliminary experimental results demonstrated the possibility of artery TOF MRA on low-cost 0.05 T scanners for the first time, despite the extremely low MR signal. We expect to improve the quality of ULF TOF MRA in the near future through sequence development and optimization, ongoing advances in ULF hardware and image formation, and the use of vascular T1 contrast agents.

摘要

我们旨在探索在超低磁场(ULF)下进行头颈部时间飞跃(TOF)磁共振血管造影(MRA)的可行性。TOF MRA 是在没有射频(RF)和磁屏蔽的高度简化的 0.05 T MRI 扫描仪上进行的。采用倾斜优化的非饱和激发 RF 脉冲的流动补偿三维(3D)梯度回波(GRE)序列和流动补偿多切片二维(2D)GRE 序列,分别用于脑动脉和静脉成像。对于颈动脉和颈静脉成像,分别使用流动补偿 2D GRE 序列,并对静脉和动脉进行预饱和。MRA 是在年轻健康受试者中进行的。通过强烈的血流效应和背景组织抑制,可以观察到血管与背景之间的对比度。可以在原始 GRE 图像和最大强度投影中识别出主要的大脑动脉和静脉、颈动脉、颈静脉以及动脉分叉。在多次检查中,都可以发现主要的脑和颈部动脉具有可重复性。这些初步的实验结果首次证明了在低成本 0.05 T 扫描仪上进行动脉 TOF MRA 的可能性,尽管 MR 信号极低。我们期望通过序列开发和优化、正在进行的 ULF 硬件和图像形成方面的进展以及使用血管 T1 对比剂,在不久的将来提高 ULF TOF MRA 的质量。

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