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[基于高分辨率多期回波平面成像的信号靶向与交替射频对比剂固有流入增强多期血管造影相结合的非对比时间分辨磁共振血管造影,联合基于空间分辨率回波平面成像的信号靶向与交替射频在颅内动脉中的应用]

[Non-contrast time-resolved magnetic resonance angiography combining high resolution multiple phase echo planar imaging based signal targeting and alternating radiofrequency contrast inherent inflow enhanced multi phase angiography combining spatial resolution echo planar imaging based signal targeting and alternating radiofrequency in intracranial arteries].

作者信息

Nakamura Masanobu, Yoneyama Masami, Tabuchi Takashi, Takemura Atsushi, Obara Makoto, Sawano Seishi

机构信息

Yaesu Clinic.

出版信息

Nihon Hoshasen Gijutsu Gakkai Zasshi. 2012;68(11):1525-32. doi: 10.6009/jjrt.2012_jsrt_68.11.1525.

Abstract

Detailed information on anatomy and hemodynamics in cerebrovascular disorders such as AVM and Moyamoya disease is mandatory for defined diagnosis and treatment planning. Arterial spin labeling technique has come to be applied to magnetic resonance angiography (MRA) and perfusion imaging in recent years. However, those non-contrast techniques are mostly limited to single frame images. Recently we have proposed a non-contrast time-resolved MRA technique termed contrast inherent inflow enhanced multi phase angiography combining spatial resolution echo planar imaging based signal targeting and alternating radiofrequency (CINEMA-STAR). CINEMA-STAR can extract the blood flow in the major intracranial arteries at an interval of 70 ms and thus permits us to observe vascular construction in full by preparing MIP images of axial acquisitions with high spatial resolution. This preliminary study demonstrates the usefulness of the CINEMA-STAR technique in evaluating the cerebral vasculature.

摘要

对于诸如动静脉畸形(AVM)和烟雾病等脑血管疾病,详细的解剖学和血流动力学信息对于明确诊断和治疗规划至关重要。近年来,动脉自旋标记技术已应用于磁共振血管造影(MRA)和灌注成像。然而,这些非对比技术大多限于单帧图像。最近,我们提出了一种非对比时间分辨MRA技术,称为基于空间分辨率回波平面成像的信号靶向和交替射频相结合的对比固有流入增强多相血管造影(CINEMA-STAR)。CINEMA-STAR能够以70毫秒的间隔提取主要颅内动脉的血流,从而通过制备具有高空间分辨率的轴向采集的最大强度投影(MIP)图像,使我们能够全面观察血管结构。这项初步研究证明了CINEMA-STAR技术在评估脑血管系统方面的实用性。

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