Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.
Magn Reson Med. 2011 Feb;65(2):432-7. doi: 10.1002/mrm.22637. Epub 2010 Oct 11.
Chemical exchange saturation transfer (CEST) and magnetization transfer techniques provide unique and potentially quantitative contrast mechanisms in multiple MRI applications. However, the in vivo implementation of these techniques has been limited by the relatively slow MRI acquisition techniques, especially on high-field MRI scanners. A new, rapid CEST-fast imaging with steady-state free precession technique was developed to provide sensitive CEST contrast in ∼20 sec. In this study at 7 T with in vitro bovine glycogen samples and initial in vivo results in a rat liver, the CEST-fast imaging with steady-state free precession technique was shown to provide equivalent CEST sensitivity in comparison to a conventional CEST-spin echo acquisition with a 50-fold reduction in acquisition time. The sensitivity of the CEST-fast imaging with steady-state free precession technique was also shown to be dependent on k-space encoding with centric k-space encoding providing a 30-40% increase in CEST sensitivity relative to linear encoding for 256 or more k-space lines. Overall, the CEST-fast imaging with steady-state free precession acquisition technique provides a rapid and sensitive imaging platform with the potential to provide quantitative CEST and magnetization transfer imaging data.
化学交换饱和传递(CEST)和磁化转移技术在多种 MRI 应用中提供了独特且潜在的定量对比机制。然而,这些技术的活体实施受到相对较慢的 MRI 采集技术的限制,特别是在高场 MRI 扫描仪上。一种新的快速 CEST-稳态自由进动成像技术被开发出来,可在约 20 秒内提供敏感的 CEST 对比。在这项在 7T 下进行的体外牛糖原样本和初始大鼠肝脏体内研究中,与传统的 CEST 自旋回波采集相比,CEST-稳态自由进动成像技术在采集时间减少 50 倍的情况下提供了等效的 CEST 灵敏度。CEST-稳态自由进动成像技术的灵敏度也表现出对 k 空间编码的依赖性,中心 k 空间编码相对于线性编码在 256 条或更多 k 空间线时提供了 30-40%的 CEST 灵敏度增加。总体而言,CEST-稳态自由进动采集技术提供了一种快速灵敏的成像平台,具有提供定量 CEST 和磁化转移成像数据的潜力。