Yu Shuai, Kwok Derek, Zhou Yufu, Zhang Qing, Huang Xiaoyan, Li Geng, Qiu Bensheng
Centers for Biomedical Engineering, University of Science and Technology of China, Hefei, Anhui 230027, China.
Time Medical Limited, Shatin N.T., Hong Kong 999077, China.
Magn Reson Imaging. 2017 Feb;36:112-120. doi: 10.1016/j.mri.2016.10.031. Epub 2016 Oct 28.
Real-time or near-real-time acquisition plays a key role in providing immediate image guidance for interventional magnetic resonance imaging (iMRI). However, the requirement of accurate needle tip localization has made several accelerating techniques, like Keyhole imaging or sliding window reconstruction, difficult to be applied to iMRI. The purpose of this work was to further explore the possible ways of applying view sharing techniques to iMRI. Inspired by Keyhole imaging, we present an easy-to-implement accelerating strategy called "Alternate update of shifted extended keyholes (AUSEK)". In this method, the keyhole views are not only extended but also shifted towards either high-frequency edge to form two divisions in k-space. The divisions which are mirrored to each other along the center are alternately updated following a reference scan. By using simulations and experiments, we demonstrate that AUSEK could effectively preserve the spatial resolution of the image, especially of the needle, at a temporal acceleration rate of about 2.5. AUSEK was implemented online in an open-configuration low-field MR imaging system.
实时或近实时采集在为介入磁共振成像(iMRI)提供即时图像引导方面起着关键作用。然而,对准确的针尖定位的要求使得几种加速技术,如钥匙孔成像或滑动窗口重建,难以应用于iMRI。这项工作的目的是进一步探索将视图共享技术应用于iMRI的可能方法。受钥匙孔成像的启发,我们提出了一种易于实现的加速策略,称为“移位扩展钥匙孔交替更新(AUSEK)”。在这种方法中,钥匙孔视图不仅被扩展,而且朝着高频边缘移位,在k空间中形成两个分区。沿着中心相互镜像的分区在参考扫描之后交替更新。通过使用模拟和实验,我们证明AUSEK能够以约2.5的时间加速率有效地保持图像的空间分辨率,特别是针的空间分辨率。AUSEK在开放式低场磁共振成像系统中在线实现。