Korin H W, Felmlee J P, Ehman R L, Riederer S J
Department of Diagnostic Radiology, Mayo Clinic, Rochester, MN 55905.
Radiology. 1990 Oct;177(1):217-21. doi: 10.1148/radiology.177.1.2399320.
The authors describe an adaptive motion correction method for three-dimensional magnetic resonance (MR) imaging. Three-dimensional imaging offers many advantages over two-dimensional multisection imaging but is susceptible to image corruption due to motion. Thus, it has been of limited use in the imaging of mobile structures, and the relatively long imaging times required have hindered its use in patients who tend to move during imaging. The authors' technique uses interleaved "navigator" echoes to provide a measure of displacement for each image echo in the acquisition and then uses this information to allow correction of the image data. The theory for signal corruption due to motion and the correction scheme that follows from it are presented. This method can produce excellent results when the motion is correctly modeled.
作者描述了一种用于三维磁共振(MR)成像的自适应运动校正方法。三维成像相对于二维多层面成像具有许多优势,但容易因运动而导致图像损坏。因此,它在移动结构成像中的应用有限,并且所需的相对较长的成像时间阻碍了其在成像过程中容易移动的患者中的应用。作者的技术使用交错的“导航”回波来为采集过程中的每个图像回波提供位移测量,然后利用这些信息对图像数据进行校正。文中介绍了因运动导致信号损坏的理论以及由此得出的校正方案。当运动被正确建模时,该方法可以产生出色的结果。