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基于动态 ASL MR 血管造影的半自动脑血管区域划分,无需血管编码标记。

Semiautomatic cerebrovascular territory mapping based on dynamic ASL MR angiography without vessel-encoded labeling.

机构信息

USC Stevens Neuroimaging and Informatics Institute, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.

Department of Neurology, University of Southern California, Los Angeles, CA, USA.

出版信息

Magn Reson Med. 2021 May;85(5):2735-2746. doi: 10.1002/mrm.28623. Epub 2020 Dec 21.

Abstract

PURPOSE

Characterizing vessel territories can provide crucial information for evaluation of cerebrovascular disorders. In this study, we present a novel postprocessing pipeline for vascular territorial imaging of cerebral arteries based on a noncontrast enhanced time-resolved 4D magnetic resonance angiography (MRA).

METHODS

Eight healthy participants, 1 Moyamoya patient, and 1 arteriovenous malformations patient were recruited. Territorial segmentation and relative blood flow rate calculations of cerebral arteries including left and right middle cerebral arteries and left and right posterior cerebral arteries were carried out based on the 4D MRA-derived arterial arrival time maps of intracranial vessels.

RESULTS

Among healthy young subjects, the average relative blood flow rate values corresponding to left and right middle cerebral arteries and left and right posterior cerebral arteries were 35.9 ± 5.9%, 32.9 ± 7.5%, 15.4 ± 3.8%, and 15.9 ± 2.5%, respectively. Excellent agreement was observed between relative blood flow rate values obtained from the proposed 4D MRA-based method and reference 2D phase contrast MRI. Abnormal cerebral circulations were visualized and quantified on both patients using the developed technique.

CONCLUSION

The vascular territorial imaging technique developed in this study allowed for the generation of territorial maps with user-defined level of details within a clinically feasible scan time, and as such may provide useful information to assess cerebral circulation balance in different pathologies.

摘要

目的

描绘血管分布区域可以为评估脑血管疾病提供关键信息。在这项研究中,我们提出了一种新的基于非对比增强时间分辨 4D 磁共振血管造影(MRA)的脑动脉血管分布成像后处理方法。

方法

共纳入 8 名健康志愿者、1 名烟雾病患者和 1 名动静脉畸形患者。基于颅内血管的 4D MRA 动脉到达时间图,对大脑动脉的血管分布区域进行分割,并计算左、右大脑中动脉和左、右大脑后动脉的相对血流率。

结果

在健康年轻受试者中,左、右大脑中动脉和左、右大脑后动脉的平均相对血流率分别为 35.9 ± 5.9%、32.9 ± 7.5%、15.4 ± 3.8%和 15.9 ± 2.5%。从所提出的基于 4D MRA 的方法和参考的 2D 相位对比 MRI 获得的相对血流率值之间观察到极好的一致性。使用开发的技术在两名患者上可视化和量化了异常的脑循环。

结论

本研究中开发的血管分布成像技术可在临床可行的扫描时间内生成具有用户定义细节水平的区域图,从而为评估不同病变中的脑循环平衡提供有用的信息。

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