Wu Hochong H, Lee Jin Hyung, Nishimura Dwight G
Magnetic Resonance Systems Research Laboratory, Department of Electrical Engineering, Stanford University, Stanford, California, USA.
Magn Reson Med. 2008 Jan;59(1):102-12. doi: 10.1002/mrm.21300.
The concentric rings two-dimensional (2D) k-space trajectory provides an alternative way to sample polar data. By collecting 2D k-space data in a series of rings, many unique properties are observed. The concentric rings are inherently centric-ordered, provide a smooth weighting in k-space, and enable shorter total scan times. Due to these properties, the concentric rings are well-suited as a readout trajectory for magnetization-prepared studies. When non-Cartesian trajectories are used for MRI, off-resonance effects can cause blurring and degrade the image quality. For the concentric rings, off-resonance blur can be corrected by retracing rings near the center of k-space to obtain a field map with no extra excitations, and then employing multifrequency reconstruction. Simulations show that the concentric rings exhibit minimal effects due to T(2) (*) modulation, enable shorter scan times for a Nyquist-sampled dataset than projection-reconstruction imaging or Cartesian 2D Fourier transform (2DFT) imaging, and have more spatially distributed flow and motion properties than Cartesian sampling. Experimental results show that off-resonance blurring can be successfully corrected to obtain high-resolution images. Results also show that concentric rings effectively capture the intended contrast in a magnetization-prepared sequence.
同心环二维(2D)k空间轨迹提供了一种采样极坐标数据的替代方法。通过在一系列环中收集二维k空间数据,可以观察到许多独特的特性。同心环本质上是中心有序的,在k空间中提供平滑加权,并能缩短总扫描时间。由于这些特性,同心环非常适合作为磁化准备研究的读出轨迹。当非笛卡尔轨迹用于磁共振成像(MRI)时,失谐效应会导致图像模糊并降低图像质量。对于同心环,失谐模糊可以通过在k空间中心附近回溯环来校正,以获得无需额外激发的场图,然后采用多频重建。模拟表明,同心环由于T(2)*调制而表现出最小的影响,对于奈奎斯特采样数据集,其扫描时间比投影重建成像或笛卡尔二维傅里叶变换(2DFT)成像更短,并且比笛卡尔采样具有更多空间分布的流动和运动特性。实验结果表明,失谐模糊可以成功校正以获得高分辨率图像。结果还表明,同心环在磁化准备序列中有效地捕捉了预期的对比度。