Interdisciplinary Institute of Neuroscience and Technology, Key Laboratory for Biomedical Engineering of Ministry of Education, College of Biomedical Engineering & Instrument Science, Zhejiang University, Hangzhou, People's Republic of China.
School of Electronic Engineering, the National Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi'an, People's Republic of China.
Phys Med Biol. 2022 Sep 23;67(19). doi: 10.1088/1361-6560/ac8fdf.
. Improving the local uniformity ofB1+field for awake monkey brain magnetic resonance imaging (MRI) at ultra-high fields while facilitating convenient placement and fixation of MRI-compatible multimodal devices for neuroscience study, can eventually advance our understanding of the primate's brain organization.. A group of single-channel RF coils including conventional loop coils and loopole coils sharing the same size and shape were designed for comparison; their performance as the transmit coil was quantitatively evaluated through a series of numerical electromagnetic (EM) simulations, and further verified by using 7T MRI over a saline phantom and a monkey. Compared to conventional loop coils, the optimized loopole coil brought up to 23.5%B1+uniformity improvement for monkey brain imaging in EM simulations, and this performance was further verified over monkey brain imaging at 7T. Importantly, we have systematically explored the underlying mechanism regarding the relationship between loopole coils' current density distribution andB1+uniformity, observing that it can be approximated as a sinusoidal curve.. The proposed loopole coil design can improve the imaging quality in awake and behaving monkeys, thus benefiting advanced brain research at UHF.
. 在超高场下,为了提高清醒猴脑磁共振成像 (MRI) 的局部磁场均匀性,同时方便地放置和固定用于神经科学研究的兼容多模态设备,可以最终增进我们对灵长类大脑结构的理解。一组包括常规环形线圈和环形线圈的单通道射频线圈被设计用于比较;通过一系列数值电磁 (EM) 模拟对它们作为发射线圈的性能进行了定量评估,并通过在盐水模型和猴子上使用 7T MRI 进一步验证。与常规环形线圈相比,优化后的环形线圈在 EM 模拟中使猴子大脑成像的 B1+均匀性提高了 23.5%,这一性能在 7T 下的猴子大脑成像中得到了进一步验证。重要的是,我们系统地探索了环形线圈电流密度分布与 B1+均匀性之间关系的潜在机制,观察到它可以近似为正弦曲线。这种所提出的环形线圈设计可以提高清醒和行为猴子的成像质量,从而有利于在 UHF 下进行高级大脑研究。