Nijm Grace M, Sahakian Alan V, Swiryn Steven, Carr James C, Sheehan John J, Larson Andrew C
Department of Electrical Engineering and Computer Science, Northwestern University, Evanston, Illinois 60208, USA.
J Magn Reson Imaging. 2008 Sep;28(3):767-72. doi: 10.1002/jmri.21514.
To determine whether improved self-gating (SG) algorithms can provide superior synchronization accuracy for retrospectively gated cine MRI.
First difference, template matching, and polynomial fitting algorithms were implemented to improve the synchronization of MRI data using cardiac SG signals. Cine datasets were acquired during short-axis, two-, three-, and four-chamber cardiac MRI scans. The root-mean-square (RMS) error of SG synchronization positions compared to detected R-wave positions were calculated along with the mean square error (MSE) and peak signal-to-noise ratio (PSNR) comparing SG to electrocardiogram (ECG)-gated images. Overall image quality was also compared by two expert reviewers.
RMS errors were highest for the first difference method for all orientations. Improvements for both template matching and cubic polynomial fitting methods were significant for two-, three-, and four-chamber scans. MSE values were lower and PSNR were significantly higher for the cubic method compared to the first difference method for all orientations. Reviewers scored the images to be of comparable quality.
Template matching and polynomial fitting improved the accuracy of cardiac cycle synchronization for two-, three-, and four-chamber scans; improvements in SG synchronization accuracy were reflected in improvements in analytical image quality. Implementation of robust postprocessing algorithms may bring SG approaches closer to clinical utilization.
确定改进的自门控(SG)算法是否能为回顾性门控心脏磁共振成像(cine MRI)提供更高的同步精度。
采用一阶差分、模板匹配和多项式拟合算法,利用心脏SG信号改善MRI数据的同步。在短轴、二腔、三腔和四腔心脏MRI扫描过程中采集cine数据集。计算SG同步位置与检测到的R波位置相比的均方根(RMS)误差,以及将SG与心电图(ECG)门控图像进行比较的均方误差(MSE)和峰值信噪比(PSNR)。两位专家评审员还对整体图像质量进行了比较。
一阶差分法在所有方向上的RMS误差最高。模板匹配和三次多项式拟合方法在二腔、三腔和四腔扫描中的改进都很显著。与一阶差分法相比,三次多项式拟合方法在所有方向上的MSE值更低,PSNR值显著更高。评审员对图像质量的评分相当。
模板匹配和多项式拟合提高了二腔、三腔和四腔扫描的心动周期同步精度;SG同步精度的提高反映在分析图像质量的提高上。强大的后处理算法的实施可能会使SG方法更接近临床应用。