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Global small-angle scattering data analysis of inverted hexagonal phases

机译:倒六角相的整体小角散射数据分析

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摘要

A global analysis model has been developed for randomly oriented, fully hydrated, inverted hexagonal (HII) phases formed by many amphiphiles in aqueous solution, including membrane lipids. The model is based on a structure factor for hexagonally packed rods and a compositional model for the scattering length density, enabling also the analysis of positionally weakly correlated HII phases. Bayesian probability theory was used for optimization of the adjustable parameters, which allows parameter correlations to be retrieved in much more detail than standard analysis techniques and thereby enables a realistic error analysis. The model was applied to different phosphatidylethanolamines, including previously unreported HII data for diC14:0 and diC16:1 phosphatid­yl­ethanolamine. The extracted structural features include intrinsic lipid curvature, hydrocarbon chain length and area per lipid at the position of the neutral plane.
机译:已开发出一种由许多两亲物在水溶液中形成的随机定向,完全水合,倒六角形(HII)相的全局分析模型,其中包括膜脂质。该模型基于六角形填充棒的结构因子和散射长度密度的成分模型,从而还可以分析位置相关性较弱的HII相。贝叶斯概率理论用于优化可调参数,与标准分析技术相比,它可以更详细地检索参数相关性,从而可以进行实际的误差分析。该模型已应用于不同的磷脂酰乙醇胺,包括先前未报告的diC14:0和diC16:1磷脂酰­乙醇胺的HII数据。提取的结构特征包括固有脂质曲率,烃链长度和中性平面位置上每个脂质的面积。

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