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Quantification of J-resolved proton spectra in two-dimensions with LCModel using GAMMA-simulated basis sets at 4 Tesla

机译:使用GAModel模拟的基集在4 Tesla下使用LCModel对二维J分解质子谱进行定量

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摘要

A two-dimensional, J-resolved magnetic resonance spectroscopic extraction approach was developed employing GAMMA-simulated, LCMoclel basis-sets. In this approach, a two-dimensional J-resolved (2D-JPRESS) dataset was resolved into a series of one-dimensional spectra where each spectrum was modeled and fitted with its theoretically customized LCMoclel template. Metabolite levels were derived from the total integral across the J-series of spectra for each metabolite. Phantoms containing physiologic concentrations of the major brain chemicals were used for validation. Varying concentrations of glutamate and glutamine were evaluated at and around their accepted in vivo concentrations in order to compare the accuracy and precision of our method with 30 ms PRESS. We also assessed 2D-JPRESS and 30 ms PRESS in vivo, in a single voxel within the parieto-occipital cortex by scanning ten healthy volunteers once and a single healthy volunteer over nine repeated measures. Phantom studies demonstrated that serial fitting of 2D-JPRESS spectra with simulated LCMoclel basis sets provided accurate concentration estimates for common metabolites including glutamate and glutamine. Our in vivo results using 2D-JPRESS suggested superior reproducibility in measuring glutamine and glutamate relative to 30 ms PRESS. These novel methods have clear implications for clinical and research studies seeking to understand neurochemical dysfunction.
机译:利用GAMMA模拟的LCMoclel基集,开发了二维J分辨磁共振波谱提取方法。在这种方法中,将二维J解析(2D-JPRESS)数据集解析为一系列一维光谱,其中每个光谱都经过建模并配有其理论上定制的LCMoclel模板。代谢物水平是从每种代谢物的J系列光谱的总积分中得出的。包含生理浓度的主要大脑化学物质的幻影用于验证。在30 ms PRESS压力下比较我们的方法在体内可接受的浓度时及其周围的浓度,以评估各种浓度的谷氨酸和谷氨酰胺。我们还通过扫描十名健康志愿者一次和一位健康志愿者九次重复测量,评估了在顶枕皮质内单个体素中的2D-JPRESS和30ms PRESS体内。幻像研究表明,将2D-JPRESS光谱与模拟LCMoclel基组进行序列拟合可为包括谷氨酸和谷氨酰胺在内的常见代谢物提供准确的浓度估算值。我们使用2D-JPRESS的体内结果表明,相对于30毫秒PRESS,谷氨酰胺和谷氨酸的测量具有更高的重现性。这些新颖的方法对寻求了解神经化学功能障碍的临床和研究具有明显的启示。

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