Marsman Anouk, Boer Vincent O, Luijten Peter R, Hulshoff Pol Hilleke E, Klomp Dennis W J, Mandl René C W
Psychiatry, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, Netherlands.
Radiology, Brain Center Rudolf Magnus, University Medical Center Utrecht, Utrecht, Netherlands.
Front Psychiatry. 2017 Apr 21;8:60. doi: 10.3389/fpsyt.2017.00060. eCollection 2017.
To assess reproducibility of glutamate measurement in the human brain by two short echo time (TE) H-MRS sequences [stimulated echo acquisition mode (STEAM) and semi-localized by adiabatic selective refocusing (sLASER)] at 7 T. Reliable assessment of glutamate is important when studying a variety of neurological and neuropsychiatric disorders. At 7 T, the glutamate signal can be separated from the glutamine signal and hence more accurately measured as compared to lower field strengths. A sLASER sequence has been developed for 7 T, using field focusing at short TE, resulting in twice as much signal as can be obtained using STEAM and improved localization accuracy due to a decreased chemical shift artifact.
Eight subjects were scanned twice using both STEAM and sLASER. Data were acquired from the frontal and occipital brain region. Subsequently, intraclass correlations were computed for the estimated metabolite concentrations.
sLASER has higher ICC's for glutamate concentration as compared to STEAM in both the frontal and occipital VOI, which is probably due to the higher sensitivity and localization accuracy.
We conclude that sLASER H-MRS at 7 T is a reliable method to obtain reproducible measures of glutamate levels in the human brain at such high accuracy that individual variability, even between age-matched subjects, is measured.
通过7T场强下的两种短回波时间(TE)氢磁共振波谱(H-MRS)序列[刺激回波采集模式(STEAM)和绝热选择性重聚焦半定位法(sLASER)]评估人脑谷氨酸测量的可重复性。在研究各种神经和神经精神疾病时,可靠地评估谷氨酸很重要。在7T场强下,与较低场强相比,谷氨酸信号可以与谷氨酰胺信号分离,从而更准确地测量。已开发出一种适用于7T场强的sLASER序列,该序列在短TE时采用场聚焦,所获得的信号是STEAM序列的两倍,并且由于化学位移伪影减少,定位准确性提高。
8名受试者分别使用STEAM和sLASER序列进行了两次扫描。数据采集自额叶和枕叶脑区。随后,计算估计代谢物浓度的组内相关性。
在额叶和枕叶感兴趣区(VOI),sLASER序列测量谷氨酸浓度的组内相关性均高于STEAM序列,这可能是由于其更高的灵敏度和定位准确性。
我们得出结论,7T场强下的sLASER H-MRS是一种可靠的方法,能够以高精度获得人脑谷氨酸水平的可重复测量结果,甚至可以测量年龄匹配受试者之间的个体差异。