Institute of Neuroscience and Medicine-4, Forschungszentrum Jülich, Wilhelm-Johnen-Str., Jülich, Germany.
Magn Reson Med. 2013 Jun;69(6):1691-6. doi: 10.1002/mrm.24417. Epub 2012 Jul 24.
The low MR sensitivity of the sodium nucleus and its low concentration in the human body constrain acquisition time. The use of both single-quantum and triple-quantum sodium imaging is, therefore, restricted. In this work, we present a novel MRI sequence that interleaves an ultra-short echo time radial projection readout into the three-pulse triple-quantum preparation. This allows for simultaneous acquisition of tissue sodium concentration weighted as well as triple-quantum filtered images. Performance of the sequence is shown on phantoms. The method is demonstrated on six healthy informed volunteers and is applied to three cases of brain tumors. A comparison with images from tumor specific O-(2-[18F]fluoroethyl)-L-tyrosine positron emission tomography and standard MR images is presented. The combined information of the triple-quantum-filtered images with single-quantum images may enable a better understanding of tissue viability. Future studies can benefit from the evaluation of both contrasts with shortened acquisition times.
钠核的低磁共振灵敏度及其在人体中的低浓度限制了采集时间。因此,单量子和三量子钠成像是受到限制的。在这项工作中,我们提出了一种新的 MRI 序列,将超短回波时间径向投影读出技术插入到三脉冲三量子准备中。这允许同时采集组织钠浓度加权和三量子滤波图像。在体模上展示了该序列的性能。该方法在六名健康志愿者中进行了验证,并应用于三例脑肿瘤。与肿瘤特异性 O-(2-(18F)氟乙基)-L-酪氨酸正电子发射断层扫描和标准磁共振图像的比较。与单量子图像相结合的三量子滤波图像的综合信息可以更好地了解组织活力。未来的研究可以从缩短采集时间的两种对比评估中受益。