Al-Kwifi Osama, Shelef Ilan, Farb Richard I, Stainsby Jeffrey, Wright Graham A
Department of Imaging Research, Sunnybrook and Women's College Health Sciences Centre, Toronto, Ontario, Canada.
J Magn Reson Imaging. 2006 Aug;24(2):267-73. doi: 10.1002/jmri.20648.
To generate two separate three-dimensional (3D) high spatial resolution images of the intracranial arterial and venous systems using a single contrast injection.
A 3D contrast-enhanced (CE) magnetic resonance angiography (MRA) acquisition was modified to create two separate k-space data sets to encode the arterial and venous enhancement signals individually after contrast agent injection. Following an automated detection of contrast arrival, the central k-space views corresponding to the arterial phase were acquired for the first eight seconds. A full elliptical-centric acquisition was then acquired for the venous phase and the missing views in the periphery of the first k-space data set were copied from the venous phase. A total of 18 patients underwent this study. Image quality, signal-to-noise ratio (SNR), and contrast-to-noise ratio (CNR) were determined in both intracranial systems.
Two 3D image sets were generated for the arterial and venous intracranial systems. Both sets have high quality images that are clinically diagnostic. SNR and CNR were high in both sets, so that all the major vessels were visible.
This technique provides images with high spatial resolution for both arterial and venous intracranial systems using a single contrast injection.
通过单次注射造影剂生成颅内动脉和静脉系统的两个独立的三维(3D)高空间分辨率图像。
对三维对比增强(CE)磁共振血管造影(MRA)采集进行修改,以创建两个独立的k空间数据集,在注射造影剂后分别编码动脉和静脉增强信号。在自动检测到造影剂到达后,在最初的八秒内采集对应于动脉期的中央k空间视图。然后对静脉期进行全椭圆中心采集,并将第一个k空间数据集周边缺失的视图从静脉期复制过来。共有18名患者接受了这项研究。在两个颅内系统中均测定了图像质量、信噪比(SNR)和对比噪声比(CNR)。
为颅内动脉和静脉系统生成了两个3D图像集。两组均具有临床诊断性的高质量图像。两组的SNR和CNR均较高,所有主要血管均清晰可见。
该技术通过单次注射造影剂为颅内动脉和静脉系统提供了高空间分辨率的图像。