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A comparison of sLASER and MEGA-sLASER using simultaneous interleaved acquisition for measuring GABA in the human brain at 7T

机译:sLASER与MEGA-sLASER的同步交错采集在7T下测量人脑中GABA的比较

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摘要

γ-Aminobutyric acid (GABA), the major inhibitory neurotransmitter, is challenging to measure using proton spectroscopy due to its relatively low concentration, J-coupling and overlapping signals from other metabolites. Currently, the prevalent methods for detecting GABA at ultrahigh field strengths (≥ 7 T) are GABA-editing and model fitting of non-editing single voxel spectra. These two acquisition approaches have their own advantages: the GABA editing approach directly measures the GABA resonance at 3 ppm, whereas the fitting approach on the non-editing spectrum allows the detection of multiple metabolites, and has an SNR advantage over longer echo time (TE) acquisitions. This study aims to compare these approaches for estimating GABA at 7 T. We use an interleaved sequence of semi-LASER (sLASER: TE = 38 ms) and MEGA-sLASER (TE = 80 ms). This simultaneous interleaved acquisition minimizes the differential effect of extraneous factors, and enables an accurate comparison of the two acquisition methods. Spectra were acquired with an 8 ml isotropic voxel at six different brain regions: anterior-cingulate cortex, dorsolateral-prefrontal cortex, motor cortex, occipital cortex, posterior cingulate cortex, and precuneus. Spectral fitting with LCModel quantified the GABA to total Cr (tCr: Creatine + Phosphocreatine) concentration ratio. After correcting the T2 relaxation time variation, GABA/tCr ratios were similar between the two acquisition approaches. GABA editing showed smaller spectral fitting error according to Cramér–Rao lower bound than the sLASER approach for all regions examined. We conclude that both acquisition methods show similar accuracy but the precision of the MEGA-editing approach is higher for GABA measurement. In addition, the 2.28 ppm GABA resonance was found to be important for estimating GABA concentration without macromolecule contamination in the GABA-edited acquisition, when utilizing spectral fitting with LCModel.
机译:γ-氨基丁酸(GABA)是主要的抑制性神经递质,由于其相对较低的浓度,J耦合和来自其他代谢物的重叠信号,因此使用质子光谱法难以测量。当前,在超高场强(≥7 T)下检测GABA的普遍方法是GABA编辑和非编辑单个体素光谱的模型拟合。这两种采集方法各有优点:GABA编辑方法可直接测量3 ppm处的GABA共振,而非编辑光谱上的拟合方法可检测多种代谢物,并且在较长回波时间(TE)上具有SNR优势。 )收购。这项研究旨在比较估算7 T时GABA的这些方法。我们使用了半激光(sLASER:TE = 38 ms)和MEGA-sLASER(TE = 80 ms)的交错序列。这种同时进行的交错采集可以最大程度地减少无关因素的差异影响,并可以对两种采集方法进行精确比较。用8 ml各向同性体素在六个不同的大脑区域获得光谱:前扣带回皮层,背外侧前额叶皮层,运动皮层,枕叶皮层,后扣带状皮层和早孕。用LCModel进行光谱拟合可定量GABA与总Cr(tCr:肌酸+磷酸肌酸)的浓度比。校正T2弛豫时间变化后,两种采集方法之间的GABA / tCr比值相似。对于所有检查区域,与sLASER方法相比,根据Cramér-Rao下界,GABA编辑显示出较小的光谱拟合误差。我们得出的结论是,两种采集方法均显示出相似的精度,但对于GABA测量,MEGA编辑方法的精度更高。此外,当使用LCModel进行光谱拟合时,发现2.28 ppm GABA共振对于在GABA编辑的采集中估算无大分子污染的GABA浓度很重要。

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