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Number of subjects required in common study designs for functional GABA magnetic resonance spectroscopy in the human brain at 3 Tesla

机译:在3个特斯拉人脑中常见的研究设计中常见研究设计中所需的受试者数量

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Magnetic resonance spectroscopy (MRS) is a research tool for measuring the concentration of metabolites such as gamma-aminobutyric acid (GABA) and glutamate in the brain. MEGA-PRESS has been the preferred pulse sequence for GABA measurements due to low physiological GABA concentrations, hence low signal. To compensate, researchers incorporate long acquisition durations (7-10 min) making functional measurements of this metabolite challenging. Here, the acquisition duration and sample sizes required to detect specific concentration changes in GABA using MEGA-PRESS at 3 T are presented for both between-groups and within-session study designs. 75 spectra were acquired during rest using MEGA-PRESS from 41 healthy volunteers in 6 different brain regions at 3 T with voxel sizes between 13 and 22 cm(3). Between-group and within-session variance was calculated for different acquisition durations and power calculations were performed to determine the number of subjects required to detect a given percentage change in GABA/NAA signal ratio. Within-subject variability was assessed by sampling different segments of a single acquisition. Power calculations suggest that detecting a 15% change in GABA using a 2 min acquisition and a 27 cm(3) voxel size, depending on the region, requires between 8 and 93 subjects using a within-session design. A between-group design typically requires more participants to detect the same difference. In brain regions with suboptimal shimming, the subject numbers can be up to 4-fold more. Collecting data for longer than 4 min in brain regions examined in this study is deemed unnecessary, as variance in the signal did not reduce further for longer durations.
机译:磁共振光谱(MRS)是用于测量γ-氨基丁酸(GABA)等代谢物等代谢物浓度和谷氨酸的研究工具。由于低生理GABA浓度,Mega-Fround是GABA测量的优选脉冲序列,因此低信号。为了补偿,研究人员包含长的采集持续时间(7-10分钟),使这种代谢物挑战的功能测量。在此,对于在组和会间研究设计之间,介绍了使用Mega-Press检测GABA的特定浓度变化所需的采集持续时间和样本尺寸。在休息期间使用来自41个健康志愿者在6吨的6℃下使用Mega-Press的休息期获得75光谱,其中体素尺寸为13至22cm(3)。在组和会间方差之间计算用于不同的采集持续时间,并且进行功率计算以确定检测GABA / NAA信号比中给定百分比变化所需的受试者的数量。通过对单一收购的不同段进行评估,评估对象内变异性。功率计算表明,使用2分钟的采集检测GABA的15%变化和27厘米(3)个体素大小,根据该区域,需要使用内部设计内的8至93个受试者。组之间的设计通常需要更多参与者来检测相同的差异。在具有次优匀场的脑区中,受试者的数字可以高达4倍。在本研究中检查的脑区域中收集超过4分钟的数据被认为是不必要的,因为信号的方差没有进一步减少,以便更长的持续时间。

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