首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Postprocessing method to segregate and quantify the broad components underlying the phosphodiester spectral region of in vivo (31)P brain spectra.
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Postprocessing method to segregate and quantify the broad components underlying the phosphodiester spectral region of in vivo (31)P brain spectra.

机译:后处理方法,用于分离和量化体内(31)P脑谱的磷酸二酯谱区域下方的宽泛组分。

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摘要

In a typical, in vivo (31)P brain spectrum, the phosphomonoester (PME) and phosphodiester (PDE) spectral region not only contains signals from freely mobile PMEs and PDEs (which are anabolic and catabolic products of membrane phospholipids) but also signals of broader underlying lineshapes from less-mobile molecules. In general, either the PME and PDE resonances are quantified as a combined value of freely mobile metabolites plus less-mobile molecules or the broader underlying signal is reduced/eliminated prior to or post data collection. In this study, a postprocessing method that segregates and quantifies the individual contributions of the freely mobile metabolites and the less-mobile molecules is introduced. To demonstrate the precision and accuracy of the method, simulated data and in vivo (31)P brain spectroscopy data of healthy individuals were quantified. The ability to segregate and quantify these various PME and PDE contributions provides additional spectral information and improves the accuracy of the interpretation of (31)P spectroscopy results. Magn Reson Med 45:390-396, 2001. Copyright 2001 Wiley-Liss, Inc.
机译:在典型的体内(31)P脑谱中,磷酸单酯(PME)和磷酸二酯(PDE)谱区域不仅包含来自自由移动的PME和PDE(膜磷脂的合成代谢和分解代谢产物)的信号,而且还包含流动性较弱的分子形成了较宽的基础线形。通常,将PME和PDE共振量化为可自由移动的代谢物加上可移动的分子的组合值,或者在数据收集之前或之后减少/消除了更广泛的基础信号。在这项研究中,引入了一种后处理方法,该方法可以分离和量化自由移动的代谢物和移动性较小的分子的各个贡献。为了证明该方法的准确性和准确性,对健康个体的模拟数据和体内(31)P脑光谱数据进行了量化。分离和量化这些各种PME和PDE贡献的能力提供了额外的光谱信息,并提高了(31)P光谱学结果解释的准确性。 Magn Reson Med,45:390-396,2001。版权所有2001 Wiley-Liss,Inc.。

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