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高时间分辨率和高空间分辨率磁共振血管造影(4D-MRA)。

High temporal and high spatial resolution MR angiography (4D-MRA).

作者信息

Hadizadeh D R, Marx C, Gieseke J, Schild H H, Willinek W A

出版信息

Rofo. 2014 Sep;186(9):847-59. doi: 10.1055/s-0034-1366661. Epub 2014 Jun 23.

Abstract

In the first decade of the twenty-first century, whole-body magnetic resonance scanners with high field strengths (and thus potentially better signal-to-noise ratios) were developed. At the same time, parallel imaging and "echo-sharing" techniques were refined to allow for increasingly high spatial and temporal resolution in dynamic magnetic resonance angiography ("time-resolved" = TR-MRA). This technological progress facilitated tracking the passage of intra-venously administered contrast agent boluses as well as the acquisition of volume data sets at high image refresh rates ("4D-MRA"). This opened doors for many new applications in non-invasive vascular imaging, including simultaneous anatomic and functional analysis of many vascular pathologies including arterio-venous malformations. Different methods were established to acquire 4D-MRA using various strategies to acquire k-space trajectories over time in order to optimize imaging according to clinical needs. These include "keyhole"-based techniques (e. g. 4D-TRAK), TRICKS - both with and without projection - and HYPR-reconstruction, TREAT, and TWIST. Some of these techniques were first introduced in the 1980 s and 1990 s, were later enhanced and modified, and finally implemented in the products of major vendors. In the last decade, a large number of studies on the clinical applications of TR-MRA was published. This manuscript provides an overview of the development of TR-MRA methods and the 4D-MRA techniques as they are currently used in the diagnosis, treatment and follow-up of vascular diseases in various parts of the body.

摘要

在21世纪的第一个十年里,开发出了具有高场强(因而潜在地具有更好的信噪比)的全身磁共振扫描仪。与此同时,并行成像和“回波共享”技术得到完善,以在动态磁共振血管造影(“时间分辨”=TR-MRA)中实现越来越高的空间和时间分辨率。这一技术进步有助于追踪静脉注射造影剂团注的通过情况,以及以高图像刷新率采集体数据集(“4D-MRA”)。这为无创血管成像中的许多新应用打开了大门,包括对许多血管病变(包括动静脉畸形)进行解剖和功能的同步分析。人们建立了不同的方法来获取4D-MRA,采用各种策略随时间获取k空间轨迹,以便根据临床需求优化成像。这些方法包括基于“锁孔”的技术(例如4D-TRAK)、TRICKS(有无投影)和HYPR重建、TREAT以及TWIST。其中一些技术在20世纪80年代和90年代首次被引入,后来得到改进和完善,最终在主要供应商的产品中得以应用。在过去十年中,发表了大量关于TR-MRA临床应用的研究。本文综述了TR-MRA方法和4D-MRA技术的发展情况,以及它们目前在身体各部位血管疾病的诊断、治疗和随访中的应用。

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