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H-MR spectroscopy quantification using LCModel with the simulated basis-set created by software Vespa

机译:使用LCModel进行H-MR光谱定量分析,并使用Vespa软件创建的模拟基集

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Magnetic Resonance Spectroscopy (MRS) is a non-invasive technique to measure in vivo metabolite concentration. However, an accurate and reliable quantification result is extremely essential. A commonly used commercial software for proton spectra processing is LCModel, which analyzes an observed in vivo spectrum from brain tissue as a Linear Combination of in vitro Model solutions spectra. The default model spectrum provided by LCModel is acquired from in vitro measurements of metabolic solutions using the same pulse sequence and scanning parameters as the in vivo measurement. In this study, we provide a new method to create a basis-set by Vespa-0.2.0 software simulation and compare the performance of default basis-set with the performance of a simulated one. Using Vespa simulation as the basis-set will provide adequate results as well. In vitro model solution collocation, which requires great care and expertise, will be avoided. A shortcut of basis-set production brings great convenience for various kinds of research.
机译:磁共振波谱(MRS)是一种用于测量体内代谢物浓度的非侵入性技术。但是,准确而可靠的定量结果非常重要。 LCModel是用于质子光谱处理的常用商业软件,它可以分析脑组织中观察到的体内光谱,作为体外模型溶液光谱的线性组合。 LCModel提供的默认模型光谱是使用与体内测量相同的脉冲序列和扫描参数从代谢溶液的体外测量获得的。在这项研究中,我们提供了一种通过Vespa-0.2.0软件仿真创建基础集并将默认基础集的性能与仿真基础集的性能进行比较的新方法。使用Vespa仿真作为基础集也将提供足够的结果。将避免需要非常谨慎和专业的体外模型解决方案并置。基集生产的捷径为各种研究带来了极大的便利。

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