Lemke Clark, Hess Aaron, Clare Stuart, Bachtiar Velicia, Stagg Charlotte, Jezzard Peter, Emir Uzay
Oxford Centre for Functional MRI of the Brain, University of Oxford, Oxford, Oxfordshire, UK.
Oxford Centre for Clinical Magnetic Resonance Research, University of Oxford, Oxford, Oxfordshire, UK.
NMR Biomed. 2015 Jul;28(7):852-60. doi: 10.1002/nbm.3328. Epub 2015 May 14.
The aim of this study was to acquire high-quality in vivo (1) H spectra concurrently from two voxels at ultra-high field (7 T) without specialized hardware. To this end, an acquisition scheme was developed in which first-order shims and flip angles are dynamically updated to acquire spectra from both of the brain's motor cortices in an alternating fashion. To validate this acquisition scheme, separate, static, single-voxel acquisitions were also performed for comparison. Six subjects were examined using semi-LASER spectroscopy at 7 T. Barium titanate pads were used to increase the extent of the effective transmit field (B1 (+) ). Spectra were obtained from the hand area of both motor cortices for both acquisition schemes. LCModel was used to determine neurochemical profiles in order to examine variations between acquisition schemes and volumes of interest. The dynamic two-voxel acquisition protocol produced water linewidths (full width at half-maximum between 11.6 and 12.8 Hz) and signal-to-noise ratios similar to those from static single-voxel measurements. The concentrations of 13 individual and 3 combined metabolites with Cramér-Rao lower bounds below 30% were reliably detected for both acquisition schemes, and agreed well with previous postmortem assay and spectroscopy studies. The results show that high spectral quality from two voxels can be acquired concurrently without specialized hardware. This practical technique can be applied to many neuroscience applications.
本研究的目的是在不使用专门硬件的情况下,于超高场(7T)同时从两个体素获取高质量的体内¹H谱。为此,开发了一种采集方案,其中一阶匀场和翻转角会动态更新,以便交替从大脑的两个运动皮层获取谱图。为验证该采集方案,还进行了单独的、静态的单体素采集以作比较。使用7T的半激光光谱对6名受试者进行了检查。使用钛酸钡垫来增加有效发射场(B1(+))的范围。两种采集方案均从两个运动皮层的手部区域获取了谱图。使用LCModel来确定神经化学图谱,以检查采集方案和感兴趣体积之间的差异。动态双体素采集协议产生的水线宽(半高全宽在11.6至12.8Hz之间)和信噪比与静态单体素测量的结果相似。两种采集方案均可靠地检测到了13种单独代谢物和3种组合代谢物的浓度,其克莱姆 - 罗下限低于30%,并且与先前的尸检分析和光谱学研究结果吻合良好。结果表明,无需专门硬件即可同时从两个体素获取高光谱质量。这种实用技术可应用于许多神经科学应用中。