Johns Hopkins Univ., Baltimore, MD.
IEEE Trans Med Imaging. 1992;11(2):238-49. doi: 10.1109/42.141648.
A method for reconstructing motion from sequences of tagged magnetic resonance (MR) images is presented. MR tagging is used to create a spatial pattern of varying magnetization so that objects which may otherwise have constant intensity are textured, which reduces the motion ambiguity associated with the aperture problem in computer vision. To compensate for the decay of the tag pattern, a new optical flow algorithm is developed and implemented. The resulting estimated velocity field is then used to recursively update the implied motion reference map over time, thereby tracking the motion of individual particles. If a segmentation of the object is known at the time the tag pattern is created, then an object may be selectively tracked, using the estimated reference map to update the object's position as time progresses. Results are shown for both simulated and actual MR phantom data.
提出了一种从标记的磁共振(MR)图像序列中重建运动的方法。MR 标记用于创建空间变化的磁化模式,从而使原本强度不变的物体具有纹理,这减少了计算机视觉中孔径问题相关的运动模糊性。为了补偿标记模式的衰减,开发并实现了一种新的光流算法。然后,将得到的估计速度场用于随时间递归地更新隐含运动参考图,从而跟踪单个粒子的运动。如果在创建标记模式时已知对象的分割,则可以使用估计的参考图随时间更新对象的位置,从而选择性地跟踪对象。结果显示了模拟和实际的 MR 体模数据。