Institute for Biomedical Engineering, ETH Zurich and University of Zurich, Zurich, Switzerland.
NMR Biomed. 2021 Jun;34(6):e4493. doi: 10.1002/nbm.4493. Epub 2021 Feb 23.
The aim of this work was to improve the SNR efficiency of zero echo time (ZTE) MRI pulse sequences for faster imaging of short-T components at large dead-time gaps. ZTE MRI with hybrid filling (HYFI) is a strategy for retrieving inner k-space data missed during the dead-time gaps arising from radio-frequency excitation and switching in ZTE imaging. It performs hybrid filling of the inner k-space with a small single-point-imaging core surrounded by a stack of shells acquired on radial readouts in an onion-like fashion. The exposition of this concept is followed by translation into guidelines for parameter choice and implementation details. The imaging properties and performance of HYFI are studied in simulations as well as phantom, in vitro and in vivo imaging, with an emphasis on comparison with the pointwise encoding time reduction with radial acquisition (PETRA) technique. Simulations predict higher SNR efficiency for HYFI compared with PETRA at preserved image quality, with the advantage increasing with the size of the k-space gap. These results are confirmed by imaging experiments with gap sizes of 25 to 50 Nyquist dwells, in which scan times for similar image quality could be reduced by 25% to 60%. The HYFI technique provides both high SNR efficiency and image quality, thus outperforming previously known ZTE-based pulse sequences, in particular for large k-space gaps. Promising applications include direct imaging of ultrashort-T components, such as the myelin bilayer or collagen, T mapping of ultrafast relaxing signals, and ZTE imaging with reduced chemical shift artifacts.
这项工作的目的是提高零回波时间(ZTE)MRI 脉冲序列的 SNR 效率,以便在较大的死区时间间隔内更快地对短 T 成分进行成像。具有混合填充(HYFI)的 ZTE MRI 是一种在 ZTE 成像中由于射频激发和切换而产生的死区时间间隔内恢复丢失的内 K 空间数据的策略。它通过使用小的单点成像核心在洋葱状的径向读取中围绕外壳堆栈进行混合填充来对内 K 空间进行混合填充。该概念的阐述之后是参数选择和实施细节的指南。HYFI 的成像特性和性能在模拟以及体模、体外和体内成像中进行了研究,重点是与径向采集的点编码时间减少(PETRA)技术进行比较。模拟预测 HYFI 的 SNR 效率比 PETRA 高,而图像质量保持不变,随着 K 空间间隙的增大,优势也随之增加。通过具有 25 到 50 奈奎斯特停留的间隙大小的成像实验证实了这些结果,其中,为了获得相似的图像质量,扫描时间可以减少 25%至 60%。HYFI 技术提供了高 SNR 效率和图像质量,因此优于以前已知的基于 ZTE 的脉冲序列,特别是对于大的 K 空间间隙。有前途的应用包括超短 T 成分的直接成像,如髓磷脂双层或胶原蛋白,超快弛豫信号的 T 映射,以及具有减少的化学位移伪影的 ZTE 成像。