Schnerr Roald S, Jansen Jacobus F A, Uludag Kamil, Hofman Paul A M, Wildberger Joachim E, van Oostenbrugge Robert J, Backes Walter H
Department of Radiology and Nuclear Medicine, Maastricht University Medical Center, Maastricht, Netherlands.
Faculty of Health, Medicine and Life Sciences, School for Mental Health and Neuroscience, Maastricht University, Maastricht, Netherlands.
Front Physiol. 2017 Nov 24;8:961. doi: 10.3389/fphys.2017.00961. eCollection 2017.
Characterization of flow properties in cerebral arteries with 1.5 and 3 Tesla MRI is usually limited to large cerebral arteries and difficult to evaluate in the small perforating arteries due to insufficient spatial resolution. In this study, we assessed the feasibility to measure blood flow waveforms in the small lenticulostriate arteries with 7 Tesla velocity-sensitive MRI. The middle cerebral artery was included as reference. Imaging was performed in five young and five old healthy volunteers. Flow was calculated by integrating time-varying velocity values over the vascular cross-section. MRI acquisitions were performed twice in each subject to determine reproducibility. From the flow waveforms, the pulsatility index and damping factor were deduced. Reproducibility values, in terms of the intraclass correlation coefficients, were found to be good to excellent. Measured pulsatility index of the lenticulostriate arteries significantly increased and damping factor significantly decreased with age. In conclusion, we demonstrate that blood flow through the lenticostriate arteries can be precisely measured using 7 Tesla MRI and reveal effects of arterial stiffness due to aging. These findings hold promise to provide relevant insights into the pathologies involving perforating cerebral arteries.
使用1.5特斯拉和3特斯拉的磁共振成像(MRI)对脑动脉血流特性进行表征通常仅限于大脑大动脉,由于空间分辨率不足,难以评估小穿支动脉。在本研究中,我们评估了使用7特斯拉速度敏感MRI测量豆纹状小动脉血流波形的可行性。将大脑中动脉作为对照。对五名年轻和五名老年健康志愿者进行了成像。通过对血管横截面上随时间变化的速度值进行积分来计算血流量。在每个受试者中进行两次MRI采集以确定可重复性。从血流波形中推导出搏动指数和阻尼因子。组内相关系数的可重复性值良好至优秀。豆纹状动脉的测量搏动指数随年龄显著增加,阻尼因子随年龄显著降低。总之,我们证明使用7特斯拉MRI可以精确测量通过豆纹状动脉的血流量,并揭示衰老导致的动脉僵硬度的影响。这些发现有望为涉及脑穿支动脉的病理学提供相关见解。