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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Quantitative analysis of the z‐spectrum using a numerically simulated look‐up table: Application to the healthy human brain at 7T
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Quantitative analysis of the z‐spectrum using a numerically simulated look‐up table: Application to the healthy human brain at 7T

机译:使用数值模拟查找表的z光谱的定量分析:7T的健康人脑的应用

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Purpose To develop a method that fits a multipool model to z‐spectra acquired from non–steady state sequences, taking into account the effects of variations in T1 or B1 amplitude and the results estimating the parameters for a four‐pool model to describe the z‐spectrum from the healthy brain. Methods We compared measured spectra with a look‐up table (LUT) of possible spectra and investigated the potential advantages of simultaneously considering spectra acquired at different saturation powers (coupled spectra) to provide sensitivity to a range of different physicochemical phenomena. Results The LUT method provided reproducible results in healthy controls. The average values of the macromolecular pool sizes measured in white matter (WM) and gray matter (GM) of 10 healthy volunteers were 8.9%?±?0.3% (intersubject standard deviation) and 4.4%?±?0.4%, respectively, whereas the average nuclear Overhauser effect pool sizes in WM and GM were 5%?±?0.1% and 3%?±?0.1%, respectively, and average amide proton transfer pool sizes in WM and GM were 0.21%?±?0.03% and 0.20%?±?0.02%, respectively. Conclusions The proposed method demonstrated increased robustness when compared with existing methods (such as Lorentzian fitting and asymmetry analysis) while yielding fully quantitative results. The method can be adjusted to measure other parameters relevant to the z‐spectrum. Magn Reson Med 78:645–655, 2017. ? 2016 The Authors Magnetic Resonance in Medicine published by Wiley Periodicals, Inc. on behalf of International Society for Magnetic Resonance in Medicine. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
机译:目的,要开发一种方法,该方法适合从非稳态序列获取的Z-Spectra的方法,考虑到T1或B1幅度的变化的影响以及估计四个池模型的参数来描述Z的结果 - 来自健康大脑的光谱。方法我们将测量光谱与可能的光谱的查找表(LUT)进行比较并研究了同时考虑在不同饱和功率(耦合光谱)上获取的光谱的潜在优点,以提供对一系列不同的物理化学现象的敏感性。结果LUT方法提供了健康对照的可再现结果。在白质(Wm)和10个健康志愿者的白质(WM)和灰质(GM)中测量的大分子池尺寸的平均值为8.9%?±0.3%(三立交立标准偏差)和4.4%?±0.4%,而WM和GM的平均核传承池效果池尺寸为5%?±0.1%和3%?±0.1%,以及WM和GM的平均酰胺质子转移池尺寸为0.21%?±0.03%和0.03% 0.20%?±0.02%。结论与现有方法(如Lorentzian拟合和不对称分析)相比,所提出的方法表明鲁棒性增加,同时产生完全定量的结果。可以调整该方法以测量与Z光谱相关的其他参数。 Magn Reson Med 78:605-655,2017 2016年作者在Wiley期刊上发表的医学中的磁共振代表国际医学磁共振学会。这是在创意公约归因许可的条款下的开放式检修文章,其允许在任何媒体中使用,分发和再现,只要原始工作被正确引用。

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