Neuroscience Research Australia, 139 Barker St, Randwick, NSW, 2031, Australia.
School of Biomedical Sciences, The University of New South Wales, Kensington, NSW, 2052, Australia.
Phys Eng Sci Med. 2023 Jun;46(2):753-766. doi: 10.1007/s13246-023-01248-1. Epub 2023 Mar 30.
Magnetic resonance electrical properties tomography (MREPT) is an emerging imaging modality to noninvasively measure tissue conductivity and permittivity. Implementation of MREPT in the clinic requires repeatable measurements at a short scan time and an appropriate protocol. The aim of this study was to investigate the repeatability of conductivity measurements using phase-based MREPT and the effects of compressed SENSE (CS), and RF shimming on the precision of conductivity measurements. Conductivity measurements using turbo spin echo (TSE) and three-dimensional balanced fast field echo (bFFE) with CS factors were repeatable. Conductivity measurement using bFFE phase showed smaller mean and variance that those measured by TSE. The conductivity measurements using bFFE showed minimal deviation with CS factors up to 8, with deviation increasing at CS factors > 8. Subcortical structures produced less consistent measurements than cortical parcellations at higher CS factors. RF shimming using full slice coverage 2D dual refocusing echo acquisition mode (DREAM) and full coverage 3D dual TR approaches further improved measurement precision. BFFE is a more optimal sequence than TSE for phase-based MREPT in brain. Depending on the area of the brain being measured, the scan can be safely accelerated with compressed SENSE without sacrifice of precision, offering the potential to employ MREPT in clinical research and applications. RF shimming with better field mapping further improves precision of the conductivity measures.
磁共振电阻抗断层成像(MREPT)是一种新兴的成像方式,可无创测量组织电导率和介电常数。在临床中实施 MREPT 需要在短扫描时间内进行可重复的测量,并采用适当的方案。本研究旨在探讨基于相位的 MREPT 测量的重复性,以及压缩灵敏度编码(CS)和射频匀场(RF shimming)对电导率测量精度的影响。使用涡轮自旋回波(TSE)和具有 CS 因子的三维平衡快速场回波(bFFE)进行的电导率测量具有可重复性。使用 bFFE 相位进行的电导率测量的平均值和方差均小于 TSE 测量的平均值和方差。bFFE 的电导率测量在 CS 因子高达 8 时具有最小的偏差,随着 CS 因子的增加,偏差会增加。在更高的 CS 因子下,皮质分割比皮质下结构产生更一致的测量结果。使用全切片覆盖 2D 双重聚焦回波采集模式(DREAM)和全覆盖 3D 双 TR 方法进行的 RF 匀场进一步提高了测量精度。在脑 MREPT 中,bFFE 是比 TSE 更优的相位序列。根据要测量的脑区,扫描可以在不牺牲精度的情况下安全地通过压缩灵敏度编码加速,从而为 MREPT 在临床研究和应用中的应用提供了潜力。具有更好的场映射的 RF 匀场进一步提高了电导率测量的精度。