Department of Biomedical Engineering, Center for Adaptable MRI Technology, University of Basel, Allschwil, Switzerland.
Department of Physics, University of Pavia, Pavia, Italy.
NMR Biomed. 2023 Jan;36(1):e4826. doi: 10.1002/nbm.4826. Epub 2022 Sep 27.
Proton resonance frequency shift (PRFS) is currently the gold standard method for magnetic resonance thermometry. However, the linearity between the temperature-dependent phase accumulation and the static magnetic field B confines its use to rather high-field scanners. Applications such as thermal therapies could naturally benefit from lower field MRI settings through leveraging increased accessibility, a lower physical and economical footprint, and further consideration of the technical challenges associated with the integration of heating systems into conventional clinical scanners. -based thermometry has been proposed as an alternative to the gold standard; however, because of longer acquisition times, it has found clinical use solely with adipose tissue where PRFS fails. At low field, the enhanced dispersion, combined with reduced relaxation times, make mapping an appealing candidate. Here, an interleaved Look-Locker-based mapping sequence was proposed for temperature quantification at 0.1 T. A variable averaging scheme was introduced, to maximize the signal-to-noise ratio throughout recovery. In calibrated samples, an average accuracy of 85% ± 4% was achieved in 10 min, compared with the 77% ± 7% obtained using a standard averaging scheme. Temperature maps between 29.0 and 41.7°C were eventually reconstructed, with a precision of 3.0 ± 1.1°C and an accuracy of 1.5 ± 1.0°C. Accounting for longer thermal treatments and less strict temperature constraints, applications such as MR-guided mild hyperthermia treatments at low field could be envisioned.
质子共振频率偏移(PRFS)目前是磁共振测温的金标准方法。然而,温度相关的相位积累与静磁场 B 之间的线性关系限制了其在较高磁场扫描仪中的应用。热疗等应用可以通过利用更高的可用性、更低的物理和经济足迹,以及进一步考虑将加热系统集成到常规临床扫描仪中所面临的技术挑战,从较低场 MRI 设置中自然受益。基于的测温法已被提议作为金标准的替代方法;然而,由于采集时间较长,它仅在 PRFS 失效的脂肪组织中得到了临床应用。在低场下,增强的弥散,加上弛豫时间的缩短,使得映射成为一个有吸引力的候选方法。在这里,提出了一种基于 Look-Locker 的交错映射序列,用于在 0.1 T 下进行温度量化。引入了可变平均方案,以在整个恢复过程中最大化信噪比。在经过校准的样本中,与使用标准平均方案获得的 77%±7%相比,该方案在 10 分钟内实现了平均 85%±4%的准确性。最终重建了 29.0 到 41.7°C 之间的温度图,精度为 3.0±1.1°C,准确性为 1.5±1.0°C。考虑到更长的热疗时间和更宽松的温度限制,可以设想在低场进行磁共振引导的轻度热疗等应用。