从二维到四维相位对比磁共振成像在神经血管系统中的应用:它会是一次巨大飞跃还是一种花哨的装饰?
From 2D to 4D Phase-Contrast MRI in the Neurovascular System: Will It Be a Quantum Jump or a Fancy Decoration?
作者信息
Youn Sung Won, Lee Jongmin
机构信息
Department of Radiology, Catholic University of Daegu School of Medicine, Daegu, Korea.
Department of Radiology and Biomedical Engineering, Kyungpook National University School of Medicine, Daegu, Korea.
出版信息
J Magn Reson Imaging. 2022 Feb;55(2):347-372. doi: 10.1002/jmri.27430. Epub 2020 Nov 24.
Considering the crosstalk between the flow and vessel wall, hemodynamic assessment of the neurovascular system may offer a well-integrated solution for both diagnosis and management by adding prognostic significance to the standard CT/MR angiography. 4D flow MRI or time-resolved 3D velocity-encoded phase-contrast MRI has long been promising for the hemodynamic evaluation of the great vessels, but challenged in clinical studies for assessing intracranial vessels with small diameter due to long scan times and low spatiotemporal resolution. Current accelerated MRI techniques, including parallel imaging with compressed sensing and radial k-space undersampling acquisitions, have decreased scan times dramatically while preserving spatial resolution. 4D flow MRI visualized and measured 3D complex flow of neurovascular diseases such as aneurysm, arteriovenous shunts, and atherosclerotic stenosis using parameters including flow volume, velocity vector, pressure gradients, and wall shear stress. In addition to the noninvasiveness of the phase contrast technique and retrospective flow measurement through the wanted windows of the analysis plane, 4D flow MRI has shown several advantages over Doppler ultrasound or computational fluid dynamics. The evaluation of the flow status and vessel wall can be performed simultaneously in the same imaging modality. This article is an overview of the recent advances in neurovascular 4D flow MRI techniques and their potential clinical applications in neurovascular disease. LEVEL OF EVIDENCE: 5 TECHNICAL EFFICACY STAGE: 3.
考虑到血流与血管壁之间的相互作用,神经血管系统的血流动力学评估可能通过为标准CT/MR血管造影增加预后意义,为诊断和管理提供一个综合的解决方案。4D流动MRI或时间分辨3D速度编码相位对比MRI长期以来一直有望用于大血管的血流动力学评估,但由于扫描时间长和时空分辨率低,在评估小直径颅内血管的临床研究中面临挑战。当前的加速MRI技术,包括压缩感知并行成像和径向k空间欠采样采集,在保持空间分辨率的同时显著缩短了扫描时间。4D流动MRI使用流量、速度矢量、压力梯度和壁面剪切应力等参数,可视化并测量了动脉瘤、动静脉分流和动脉粥样硬化狭窄等神经血管疾病的三维复杂血流。除了相位对比技术的非侵入性以及通过分析平面的所需窗口进行回顾性血流测量外,4D流动MRI还显示出优于多普勒超声或计算流体动力学的几个优点。可以在同一成像模态中同时进行血流状态和血管壁的评估。本文概述了神经血管4D流动MRI技术的最新进展及其在神经血管疾病中的潜在临床应用。证据水平:5 技术疗效阶段:3。