Kuribayashi Hideto, Worthington Philip L, Bradley Daniel P, Checkley David R, Tessier Jean J, Waterton John C
AstraZeneca, Macclesfield, Cheshire, UK.
J Magn Reson Imaging. 2007 Jun;25(6):1248-55. doi: 10.1002/jmri.20924.
To characterize misregistration artifact in arterial input function (AIF) pixels in dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) using a two-dimensional non-echo-planar imaging (EPI)-based gradient-recalled echo (GRE) sequence.
Dynamic gadopentetate-enhanced MRI was acquired in the rat using a semikeyhole acquisition scheme. The AIF was obtained from abdominal aorta pixels. Different sliding-window reconstruction techniques were applied to determine which lines in a series of the semikeyhole acquisition were associated with the misregistration artifacts.
The misregistration along the phase-encoding direction arose when k-space lines were acquired during the rise-time of the aortic gadolinium concentration. The maximum blood concentration of gadolinium estimated from the phase shift calculation agreed with that estimated from dosage.
AIF misregistration results from a phase shift due to increasing gadolinium concentration in the aorta, and may need to be considered in small animal DCE-MRI studies with a high rate of rise in the AIF in high-field MR applications.
使用基于二维非回波平面成像(EPI)的梯度回波(GRE)序列,对动态对比增强磁共振成像(DCE-MRI)中动脉输入函数(AIF)像素的配准错误伪影进行特征描述。
采用半钥孔采集方案在大鼠中进行动态钆喷酸葡胺增强MRI检查。从腹主动脉像素获取AIF。应用不同的滑动窗口重建技术来确定在一系列半钥孔采集中哪些线与配准错误伪影相关。
当在主动脉钆浓度上升期间采集k空间线时,沿相位编码方向出现配准错误。通过相移计算估计的钆的最大血药浓度与根据剂量估计的浓度一致。
AIF配准错误是由于主动脉中钆浓度增加导致的相移引起的,在高场MR应用中AIF上升速率较高的小动物DCE-MRI研究中可能需要考虑这一点。