NeuroSpin, CEA, CNRS, Paris-Saclay University, Gif-sur-Yvette, France.
DACM, CEA, Paris-Saclay University, Gif-sur-Yvette, France.
Nat Methods. 2024 Nov;21(11):2013-2016. doi: 10.1038/s41592-024-02472-7. Epub 2024 Oct 17.
The understanding of the human brain is one of the main scientific challenges of the twenty-first century. In the early 2000s, the French Atomic Energy Commission launched a program to conceive and build a human magnetic resonance imaging scanner operating at 11.7 T. We have now acquired human brain images in vivo at such a magnetic field. We deployed parallel transmission tools to mitigate the radiofrequency field inhomogeneity problem and tame the specific absorption rate. The safety of human imaging at such high field strength was demonstrated using physiological, vestibular, behavioral and genotoxicity measurements on the imaged volunteers. Our technology yields T and T-weighted images reaching mesoscale resolutions within short acquisition times and with a high signal and contrast-to-noise ratio.
人类大脑的理解是 21 世纪主要的科学挑战之一。早在 21 世纪初,法国原子能委员会就启动了一个项目,旨在构思并建造一台可在 11.7T 下运行的人类磁共振成像扫描仪。现在,我们已经在活体中获得了这样磁场下的人脑图像。我们部署了并行传输工具来减轻射频场不均匀性问题,并控制特定吸收率。通过对成像志愿者进行生理、前庭、行为和遗传毒性测量,证明了在如此高场强下进行人体成像的安全性。我们的技术可以在短采集时间内达到中尺度分辨率,并具有高信号和对比噪声比,生成 T 和 T 加权图像。