High Field MR Centre, Department of Biomedical Imaging and Image-guided Therapy, Medical University of Vienna, Vienna, Austria; Christian Doppler Laboratory for Clinical Molecular MR Imaging, Austria.
icometrix, R&D, Leuven, Belgium.
Neuroimage. 2019 May 1;191:587-595. doi: 10.1016/j.neuroimage.2019.02.023. Epub 2019 Feb 14.
To demonstrate the feasibility of 7 T magnetic resonance spectroscopic imaging (MRSI), combined with patch-based super-resolution (PBSR) reconstruction, for high-resolution multi-metabolite mapping of gliomas.
Ten patients with WHO grade II, III and IV gliomas (6/4, male/female; 45 ± 9 years old) were prospectively measured between 2014 and 2018 on a 7 T whole-body MR imager after routine 3 T magnetic resonance imaging (MRI) and positron emission tomography (PET). Free induction decay MRSI with a 64 × 64-matrix and a nominal voxel size of 3.4 × 3.4 × 8 mm³ was acquired in six minutes, along with standard T1/T2-weighted MRI. Metabolic maps were obtained via spectral LCmodel processing and reconstructed to 0.9 × 0.9 × 8 mm³ resolutions via PBSR.
Metabolite maps obtained from combined 7 T MRSI and PBSR resolved the density of metabolic activity in the gliomas in unprecedented detail. Particularly in the more heterogeneous cases (e.g. post resection), metabolite maps enabled the identification of complex metabolic activities, which were in topographic agreement with PET enhancement.
PBSR-MRSI combines the benefits of ultra-high-field MR systems, cutting-edge MRSI, and advanced postprocessing to allow millimetric resolution molecular imaging of glioma tissue beyond standard methods. An ideal example is the accurate imaging of glutamine, which is a prime target of modern therapeutic approaches, made possible due to the higher spectral resolution of 7 T systems.
展示 7T 磁共振波谱成像(MRSI)与基于补丁的超分辨率(PBSR)重建相结合,实现胶质瘤高分辨率多代谢物图谱绘制的可行性。
2014 年至 2018 年期间,对 10 名 WHO 分级 II、III 和 IV 级胶质瘤患者(男/女 6/4;45±9 岁)进行前瞻性测量,这些患者在常规 3T 磁共振成像(MRI)和正电子发射断层扫描(PET)后在 7T 全身 MR 成像仪上进行测量。在六分钟内采集具有 64×64 矩阵和标称体素大小为 3.4×3.4×8mm³的自由感应衰减 MRSI,以及标准的 T1/T2 加权 MRI。通过光谱 LCmodel 处理获得代谢图,并通过 PBSR 重建至 0.9×0.9×8mm³分辨率。
通过联合 7T MRSI 和 PBSR 获得的代谢图以前所未有的细节分辨率解析了胶质瘤内代谢活性的密度。特别是在更具异质性的情况下(例如手术后),代谢图能够识别复杂的代谢活动,这些活动与 PET 增强在地形上是一致的。
PBSR-MRSI 结合了超高磁场 MR 系统、前沿的 MRSI 和先进的后处理技术的优势,允许对胶质瘤组织进行毫米级分辨率的分子成像,超越了标准方法。一个理想的例子是对谷氨酰胺的准确成像,由于 7T 系统的更高光谱分辨率,这成为现代治疗方法的主要目标。