Walker P G, Cranney G B, Scheidegger M B, Waseleski G, Pohost G M, Yoganathan A P
School of Chemical Engineering, Georgia Institute of Technology, Atlanta 30332-0100.
J Magn Reson Imaging. 1993 May-Jun;3(3):521-30. doi: 10.1002/jmri.1880030315.
Background phase distortion and random noise can adversely affect the quality of magnetic resonance (MR) phase velocity measurements. A semiautomated method has been developed that substantially reduces both effects. To remove the background phase distortion, the following steps were taken: The time standard deviations of the phase velocity images over a cardiac cycle were calculated. Static regions were identified as those in which the standard deviation was low. A flat surface representing an approximation to the background distortion was fitted to the static regions and subtracted from the phase velocity images to give corrected phase images. Random noise was removed by setting to zero those regions in which the standard deviation was high. The technique is demonstrated with a sample set of data in which the in-plane velocities have been measured in an imaging section showing the left ventricular outflow tract of a human left ventricle. The results are presented in vector and contour form, superimposed on the conventional MR angiographic images.
背景相位失真和随机噪声会对磁共振(MR)相速度测量的质量产生不利影响。现已开发出一种半自动化方法,可大幅降低这两种影响。为消除背景相位失真,采取了以下步骤:计算心动周期内相速度图像的时间标准差。将标准差较低的区域识别为静态区域。将一个近似背景失真的平面拟合到静态区域,并从相速度图像中减去该平面,以得到校正后的相位图像。通过将标准差较高的区域设置为零来去除随机噪声。用一组样本数据集演示了该技术,在该数据集中,已在显示人类左心室左心室流出道的成像切片中测量了平面内速度。结果以矢量和轮廓形式呈现,并叠加在传统的MR血管造影图像上。