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- W3104142426 abstract "We have developed a global analysis model for randomly oriented, fully hydrated inverted hexagonal (H$_text{II}$) 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 (SLD) enabling also the analysis of positionally weakly correlated H$_text{II}$ phases. For optimization of the adjustable parameters we used Bayesian probability theory, which allows to retrieve parameter correlations in much more detail than standard analysis techniques, and thereby enables a realistic error analysis. The model was applied to different phosphatidylethanolamines including previously not reported H$_text{II}$ 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." @default.
- W3104142426 created "2020-11-23" @default.
- W3104142426 creator A5012435104 @default.
- W3104142426 creator A5035717943 @default.
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- W3104142426 date "2019-03-28" @default.
- W3104142426 modified "2023-10-17" @default.
- W3104142426 title "Global small-angle scattering data analysis of inverted hexagonal phases" @default.
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- W3104142426 doi "https://doi.org/10.1107/s1600576719002760" @default.
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