Kang Chang-Ki, Park Chan-A, Lee David Soobin, Lee Yeong-Bae, Park Cheol-Wan, Kim Young-Bo, Cho Zang-Hee
Neuroscience Research Institute, Gachon University, Incheon, Korea.
Department of Radiological Science, Gachon University, Incheon, Korea.
Magn Reson Med. 2016 Apr;75(4):1640-6. doi: 10.1002/mrm.25600. Epub 2015 May 15.
The purpose of this study was to measure the velocity and direction of blood flow in microvessels, such as lenticulostriate arteries (LSAs), using PC MRA.
Eleven healthy subjects were scanned with 7 Tesla (T) MRI. Three velocity encoding (VENC) values of 15, 50, and 100 cm/s were tested for detecting the flow velocity in LSAs. The flow directions in Circle of Willis (CoW) were also examined with images obtained by the proposed method. Three subjects were also scanned with 3T MRI to determine the possibility of velocity measurement in LSAs. Difference between 3T and 7T was quantitatively analyzed in terms of signal-to-noise ratio and velocities in vessels and static tissues.
In 7T MRI, use of VENC = 15 cm/s provided great visualization and velocity measurements in small and slow flowing vessels, such as the LSAs. The mean of peak velocities in LSAs was 9.61 ± 1.78 cm/s. The results obtained with low VENC also clearly depicted the directions of flow in CoW, especially in posterior communicating arteries. However, 3T MRI could not detect the velocity of blood flow in LSAs.
This study demonstrated the potential for measuring the velocity and direction of blood flow in the targeted microvessels using an appropriate VENC and 7T MRI.
本研究的目的是使用相位对比磁共振血管造影(PC MRA)测量微动脉(如豆纹动脉,LSA)中的血流速度和方向。
对11名健康受试者进行7特斯拉(T)磁共振成像扫描。测试了15、50和100厘米/秒这三个速度编码(VENC)值,以检测LSA中的血流速度。还通过所提出的方法获得的图像检查了 Willis 环(CoW)中的血流方向。另外对三名受试者进行了3T磁共振成像扫描,以确定测量LSA中血流速度的可能性。从信噪比以及血管和静态组织中的速度方面对3T和7T之间的差异进行了定量分析。
在7T磁共振成像中,使用VENC = 15厘米/秒能够很好地显示小的、缓慢流动的血管(如LSA)并测量其速度。LSA中峰值速度的平均值为9.61±1.78厘米/秒。低VENC获得的结果也清楚地描绘了CoW中的血流方向,尤其是在后交通动脉中。然而,3T磁共振成像无法检测到LSA中的血流速度。
本研究证明了使用适当的VENC和7T磁共振成像测量目标微动脉中血流速度和方向的潜力。