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脑动脉血流动力学可视化比较:磁共振成像能否取代计算流体动力学?

Comparison of Hemodynamic Visualization in Cerebral Arteries: Can Magnetic Resonance Imaging Replace Computational Fluid Dynamics?

作者信息

Ngo Minh Tri, Lee Ui Yun, Ha Hojin, Jin Ning, Chung Gyung Ho, Kwak Yeong Gon, Jung Jinmu, Kwak Hyo Sung

机构信息

Department of Radiology and Research Institute of Clinical Medicine of Jeonbuk National University, Biomedical Research Institute of Jeonbuk National University Hospital, Jeon-ju 54907, Korea.

Division of Mechanical Design Engineering, Jeonbuk National University, Jeon-ju 54896, Korea.

出版信息

J Pers Med. 2021 Mar 30;11(4):253. doi: 10.3390/jpm11040253.

Abstract

A multimodality approach was applied using four-dimensional flow magnetic resonance imaging (4D flow MRI), time-of-flight magnetic resonance angiography (TOF-MRA) signal intensity gradient (SIG), and computational fluid dynamics (CFD) to investigate the 3D blood flow characteristics and wall shear stress (WSS) of the cerebral arteries. TOF-MRA and 4D flow MRI were performed on the major cerebral arteries in 16 healthy volunteers (mean age 34.7 ± 7.6 years). The flow rate measured with 4D flow MRI in the internal carotid artery, middle cerebral artery, and anterior cerebral artery were 3.8, 2.5, and 1.2 mL/s, respectively. The 3D blood flow pattern obtained through CFD and 4D flow MRI on the cerebral arteries showed reasonable consensus. CFD delivered much greater resolution than 4D flow MRI. TOF-MRA SIG and CFD WSS of the major cerebral arteries showed reasonable consensus with the locations where the WSS was relatively high. However, the visualizations were very different between TOF-MRA SIG and CFD WSS at the internal carotid artery bifurcations, the anterior cerebral arteries, and the anterior communicating arteries. 4D flow MRI, TOF-MRA SIG, and CFD are complementary methods that can provide additional insight into the hemodynamics of the human cerebral artery.

摘要

采用多模态方法,利用四维血流磁共振成像(4D流MRI)、时间飞跃磁共振血管造影(TOF-MRA)信号强度梯度(SIG)和计算流体动力学(CFD)来研究脑动脉的三维血流特征和壁面剪应力(WSS)。对16名健康志愿者(平均年龄34.7±7.6岁)的主要脑动脉进行了TOF-MRA和4D流MRI检查。通过4D流MRI测量的颈内动脉、大脑中动脉和大脑前动脉的血流速度分别为3.8、2.5和1.2 mL/s。通过CFD和4D流MRI获得的脑动脉三维血流模式显示出合理的一致性。CFD提供的分辨率比4D流MRI高得多。主要脑动脉的TOF-MRA SIG和CFD WSS与WSS相对较高的位置显示出合理的一致性。然而,在颈内动脉分叉处、大脑前动脉和前交通动脉处,TOF-MRA SIG和CFD WSS的可视化结果差异很大。4D流MRI、TOF-MRA SIG和CFD是互补的方法,可以为深入了解人脑动脉的血流动力学提供更多信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98f1/8066205/2cb6f1d9dcce/jpm-11-00253-g001.jpg

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