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Time-resolved 3D contrast-enhanced MRA with GRAPPA on a 1.5-T system for imaging of craniocervical vascular disease: initial experience

机译:在1.5 T系统上用GRAPPA进行时间分辨的3D对比增强MRA,以对颅颈血管疾病进行成像:初步经验

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Introduction: For three-dimensional (3D) imaging with magnetic resonance angiography (MRA) of the cerebral and cervical circulation, both a high temporal and a high spatial resolution with isovolumetric datasets are of interest. In an initial evaluation, we analyzed the potential of contrast-enhanced (CE) time-resolved 3D-MRA as an adjunct for neurovascular MR imaging. Methods: In ten patients with various cerebrovascular disorders and vascularized tumors in the cervical circulation, high-speed MR acquisition using parallel imaging with the GeneRalized Autocalibrating Partially Parallel Acquisitions (GRAPPA) algorithm on a 1.5-T system with a temporal resolution of 1.5 s per dataset and a nearly isovolumetric spatial resolution was applied. The results were assessed and compared with those from conventional MRA and digital subtraction angiography (DSA). Results: CE time-resolved 3D-MRA enabled the visualization and characterization of high-flow arteriovenous shunts in cases of vascular malformations or hypervascularized tumors. In steno-occlusive disease, the method provided valuable additional information about altered vessel perfusion compared to standard MRA techniques such as time-of-flight (TOF) MRA. The use of a nearly isovolumetric voxel size allowed a free-form interrogation of 3D datasets. Its comparatively low spatial resolution was found to be the major limitation. Conclusion: In this preliminary analysis, CE time-resolved 3D-MRA was revealed to be a promising complementary MRA sequence that enabled the visualization of contrast flow dynamics in various types of neurovascular disorders and vascularized cervical tumors.
机译:简介:对于大脑和子宫颈循环的磁共振血管造影(MRA)进行的三维(3D)成像,使用等容数据集的高时间分辨率和高空间分辨率都是令人感兴趣的。在初步评估中,我们分析了增强造影剂(CE)时间分辨3D-MRA作为神经血管MR成像辅助剂的潜力。方法:在十名患有各种脑血管疾病和子宫颈循环中血管性肿瘤的患者中,在1.5-T系统上使用GeneRalized自动部分校准并行采集(GRAPPA)算法,通过并行成像进行高速MR采集,时间分辨率为每秒钟1.5 s数据集和几乎等容的空间分辨率被应用。评估结果并将其与常规MRA和数字减影血管造影(DSA)的结果进行比较。结果:CE时间分辨的3D-MRA可在血管畸形或血管过度形成的情况下可视化和表征高流量动静脉分流。在狭窄闭塞性疾病中,与标准MRA技术(例如飞行时间(TOF)MRA)相比,该方法提供了有关血管灌注改变的有价值的附加信息。使用几乎等体积的体素大小可以自由形式查询3D数据集。发现其相对较低的空间分辨率是主要限制。结论:在此初步分析中,CE时间分辨的3D-MRA被证明是一种很有前途的互补MRA序列,可以可视化各种类型的神经血管疾病和血管化宫颈肿瘤中的造影剂流动动力学。

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