Institute of Clinical Physiology, National Council of Research, Via G. Moruzzi 1, 56124 Pisa, Italy.
Bioengineering Unit, Fondazione G. Monasterio CNR-Regione Toscana, 56124 Pisa, Italy.
Sensors (Basel). 2024 Apr 24;24(9):2716. doi: 10.3390/s24092716.
Magnetic resonance (MR) with sodium (Na) is a noninvasive tool providing quantitative biochemical information regarding physiology, cellular metabolism, and viability, with the potential to extend MR beyond anatomical proton imaging. However, when using clinical scanners, the low detectable Na signal and the low Na gyromagnetic ratio require the design of dedicated radiofrequency (RF) coils tuned to the Na Larmor frequency and sequences, as well as the development of dedicated phantoms for testing the image quality, and an MR scanner with multinuclear spectroscopy (MNS) capabilities. In this work, we propose a hardware and software setup for evaluating the potential of Na magnetic resonance imaging (MRI) with a clinical scanner. In particular, the reliability of the proposed setup and the reproducibility of the measurements were verified by multiple acquisitions from a 3T MR scanner using a homebuilt RF volume coil and a dedicated sequence for the imaging of a phantom specifically designed for evaluating the accuracy of the technique. The final goal of this study is to propose a setup for standardizing clinical and research Na MRI protocols.
磁共振(MR)与钠(Na)是一种非侵入性工具,可提供有关生理学、细胞代谢和活力的定量生化信息,有可能将 MR 从解剖质子成像扩展到其他领域。然而,在使用临床扫描仪时,由于可检测到的 Na 信号较弱且 Na 的磁旋比较低,因此需要设计专门针对 Na 拉莫尔频率和序列的射频(RF)线圈,以及用于测试图像质量的专用成像体模,以及具有多核波谱(MNS)功能的磁共振扫描仪。在这项工作中,我们提出了一种使用临床扫描仪评估 Na 磁共振成像(MRI)潜力的硬件和软件设置。特别是,通过使用自制的 RF 容积线圈和专门用于对特定设计用于评估技术准确性的体模进行成像的专用序列,从 3T MR 扫描仪进行多次采集,验证了所提出的设置的可靠性和测量的可重复性。本研究的最终目标是提出一种用于标准化临床和研究 Na MRI 方案的设置。