Department of Biomedical Engineering, Yale University, New Haven, CT, USA.
Department of Diagnostic Radiology, Medical Physics, University Medical Center Freiburg, Breisacher Str. 60a, 79106, Freiburg, Germany.
Sci Rep. 2019 Feb 13;9(1):1912. doi: 10.1038/s41598-018-36802-5.
Fast ROtary Nonlinear Spatial ACquisition (FRONSAC) was recently introduced as a new strategy that applies nonlinear gradients as a small perturbation to improve image quality in highly undersampled MRI. In addition to experimentally showing the previously simulated improvement to image quality, this work introduces the insight that Cartesian-FRONSAC retains many desirable features of Cartesian imaging. Cartesian-FRONSAC preserves the existing linear gradient waveforms of the Cartesian sequence while adding oscillating nonlinear gradient waveforms. Experiments show that performance is essentially identical to Cartesian imaging in terms of (1) resilience to experimental imperfections, like timing errors or off-resonance spins, (2) accommodating scan geometry changes without the need for recalibration or additional field mapping, (3) contrast generation, as in turbo spin echo. Despite these similarities to Cartesian imaging, which provides poor parallel imaging performance, Cartesian-FRONSAC consistently shows reduced undersampling artifacts and better response to advanced reconstruction techniques. A final experiment shows that hardware requirements are also flexible. Cartesian-FRONSAC improves accelerated imaging while retaining the robustness and flexibility critical to real clinical use.
快速旋转非线性空间采集(FRONSAC)最近被引入作为一种新策略,它应用非线性梯度作为小的扰动,以改善在高度欠采样 MRI 中的图像质量。除了实验证明了先前模拟的图像质量的改善之外,这项工作还引入了一个观点,即笛卡尔-FRONSAC 保留了笛卡尔成像的许多理想特征。笛卡尔-FRONSAC 在保留现有笛卡尔序列线性梯度波形的同时,添加了振荡非线性梯度波形。实验表明,在以下方面,性能与笛卡尔成像基本相同:(1)对实验不完美(如定时误差或离共振自旋)的弹性;(2)无需重新校准或额外的场映射即可适应扫描几何形状的变化;(3)对比度生成,如涡轮自旋回波。尽管与提供较差并行成像性能的笛卡尔成像具有这些相似性,但笛卡尔-FRONSAC 始终显示出减少的欠采样伪影和对先进重建技术的更好响应。最后的实验表明,硬件要求也很灵活。笛卡尔-FRONSAC 提高了加速成像的性能,同时保留了对实际临床应用至关重要的稳健性和灵活性。