Neuroscience Research Institute, Gachon University of Medicine and Science, Incheon, South Korea.
Neuroimage. 2010 Apr 15;50(3):1036-43. doi: 10.1016/j.neuroimage.2010.01.038. Epub 2010 Jan 18.
Phase contrast magnetic resonance angiography (PC MRA) is an important, non-invasive method for obtaining quantitative information on blood flow. The purpose of the present study was to investigate the dynamic cerebral arterial response in humans to visual stimulation by quantitative velocity analysis using PC MRA.
Functional PC MRA (fPCA) images at 3 Tesla MRI were acquired with a total acquisition time of 10 m 18 s for 2 rest and 1 visual stimulation sessions using a flashing checker board. Twelve healthy subjects participated in this study. Circular regions of interest (ROIs) consisting of 21 pixels were analyzed to determine the velocity changes due to visual stimulation in selected vessel segments supplying the visual cortex. Time-of-flight (TOF) MRA and PC MRA reference volume images were then compared to measure the signal intensity and quantitative blood velocity changes in the cerebral vessels.
The mean velocity changes measured by PC MRA between rest and stimulation were 0.64 and 0.42 cm/s within the peak ROI and distal ROIs of the selected blood vessels, which corresponds to a 42.9% and 30.1% increase, respectively. Both TOF MRA and PC MRA reference volume images also exhibited an increase in the signal intensity of the target vessels during stimulation.
This study demonstrated that fPCA could play a role in the quantitative analysis of the functional cerebral vascular response by measuring dynamic vascular changes in intensity and velocity in small arteries.
相位对比磁共振血管造影(PC MRA)是一种获取血流定量信息的重要非侵入性方法。本研究旨在通过 PC MRA 的定量速度分析来研究人类对视觉刺激的动态脑动脉反应。
使用闪烁棋盘对 12 名健康受试者进行了 3T MRI 的功能 PC MRA(fPCA)图像采集,总采集时间为 10 分 18 秒,包括 2 次休息和 1 次视觉刺激。在供应视觉皮层的选定血管段中,分析了由 21 个像素组成的圆形感兴趣区(ROI),以确定由于视觉刺激而导致的速度变化。然后将时飞越磁共振血管造影(TOF MRA)和 PC MRA 参考体积图像进行比较,以测量脑血管中的信号强度和定量血流速度变化。
在所选血管的峰值 ROI 和远端 ROI 内,PC MRA 测量的静息和刺激之间的平均速度变化分别为 0.64cm/s 和 0.42cm/s,分别对应于 42.9%和 30.1%的增加。在刺激期间,TOF MRA 和 PC MRA 参考体积图像也显示目标血管的信号强度增加。
本研究表明,fPCA 通过测量小动脉强度和速度的动态血管变化,可以在功能性脑血管反应的定量分析中发挥作用。