Xiang Q S
Department of Radiology, University of British Columbia, St. Paul's Hospital, Vancouver, Canada.
J Magn Reson Imaging. 1995 Sep-Oct;5(5):529-34. doi: 10.1002/jmri.1880050509.
A simple algorithm named temporal phase unwrapping (TPU) is introduced to address the phase aliasing problem in time-dependent phase contrast (CINE-PC) velocity imaging. The method exploits the temporal continuity of velocity field and unwraps the phase along time. TPU only involves a one-dimensional (1D) temporal integration; therefore, many complications in 2D or 3D spatial phase unwrapping are avoided. Differential velocity maps (DVM) between adjacent movie frames are first calculated from the complex MR images. The DVMs have no phase aliasing as the differential velocities are much smaller than the absolute velocities. Aliasing-free velocity maps are obtained by integrating the DVMs along the time direction provided an aliasing-free reference velocity map (RVM) is found as a starting point of the integration. Typically, such RVMs are always available within the cardiac cycle, especially in diastole where the blood flow is the lowest. In vivo results from fully automated processing and detailed discussion on noise behavior are presented.
为解决时间依赖型相位对比(CINE-PC)速度成像中的相位混叠问题,引入了一种名为时间相位展开(TPU)的简单算法。该方法利用速度场的时间连续性,沿时间对相位进行展开。TPU仅涉及一维(1D)时间积分;因此,避免了二维或三维空间相位展开中的许多复杂情况。首先从复数MR图像计算相邻电影帧之间的微分速度图(DVM)。由于微分速度远小于绝对速度,DVM没有相位混叠。如果找到一个无混叠参考速度图(RVM)作为积分起点,通过沿时间方向对DVM进行积分可获得无混叠速度图。通常,这种RVM在心动周期内总是可用的,尤其是在血流最低的舒张期。文中给出了全自动处理的体内结果以及关于噪声行为的详细讨论。