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颅内血管的磁共振血管造影:技术要点与临床应用

MR angiography of the intracranial vessels: technical aspects and clinical applications.

作者信息

Ozsarlak Ozkan, Van Goethem Johan W, Maes Menno, Parizel Paul M

机构信息

Neuroradiology Section, Department of Radiology, University Hospital Antwerp, Wilrijkstraat 10, 2650, Edegem, Belgium.

出版信息

Neuroradiology. 2004 Dec;46(12):955-72. doi: 10.1007/s00234-004-1297-9. Epub 2004 Dec 4.

DOI:10.1007/s00234-004-1297-9
PMID:15580489
Abstract

Evaluation of the intracranial circulation provides valuable information in the diagnosis and prognosis of various intracranial abnormalities and may influence patient management. Technical advances in magnetic resonance angiography (MRA) have improved the accuracy of this technique in various clinical situations, such as aneurysms, arterial and venous steno-occlusive diseases, vascular malformations, inflammatory arterial diseases, preoperative assessment of the patency of dural sinuses, and congenital vascular abnormalities. In many centers, MRA has replaced conventional digital subtraction angiography in screening for intracranial vascular disease, because of its non-invasive and non-ionizing character. Several MRA techniques have been developed for the imaging of the intracranial vascular system, such as time-of-flight MRA (TOF MRA), phase-contrast MRA (PC MRA), and more recently contrast-enhanced MRA (CE MRA). In the evaluation of steno-occlusive disease, the three-dimensional (3D) TOF-MRA technique is recommended for arterial evaluation, and the 2D TOF or 2D PC-MRA technique for venous evaluation. For the evaluation of aneurysms and arteriovenous malformations (AVMs), we recommend the 3D CE-MRA technique, especially dynamic sequences in case of AVM. In this review, the technical aspects, limitations, and optimization of these MRA techniques will be discussed together with their indications in intracranial disease.

摘要

颅内循环的评估为各种颅内异常的诊断和预后提供了有价值的信息,并可能影响患者的治疗管理。磁共振血管造影(MRA)技术的进步提高了该技术在各种临床情况下的准确性,如动脉瘤、动静脉狭窄闭塞性疾病、血管畸形、炎症性动脉疾病、硬脑膜窦通畅性的术前评估以及先天性血管异常。在许多中心,由于MRA具有非侵入性和非电离性的特点,它已在颅内血管疾病筛查中取代了传统的数字减影血管造影。已经开发了几种MRA技术用于颅内血管系统成像,如时间飞跃MRA(TOF MRA)、相位对比MRA(PC MRA),以及最近的对比增强MRA(CE MRA)。在评估狭窄闭塞性疾病时,推荐使用三维(3D)TOF-MRA技术进行动脉评估,使用二维TOF或二维PC-MRA技术进行静脉评估。对于动脉瘤和动静脉畸形(AVM)的评估,我们推荐使用3D CE-MRA技术,对于AVM尤其推荐动态序列。在本综述中,将讨论这些MRA技术的技术方面、局限性和优化,以及它们在颅内疾病中的应用指征。

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Shedding light on vascular imaging: the revolutionary role of nanotechnology.
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Comparison of 1.5 T and 3 T magnetic resonance angiography for detecting cerebral aneurysms using deep learning-based computer-assisted detection software.基于深度学习的计算机辅助检测软件比较 1.5T 和 3T 磁共振血管造影在脑动脉瘤检测中的应用。
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