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Water state and diffusion through lipid bilayers: Effect of hydration degree with the angle between the bilayer normal and magnetic field direction) and water diffusion along the bilayer

Lateral diffusion of lipids and diffusion of water through lipid bilayers in the presence of (1,1-dimethyl-3-oxobutyl)phosphonates. The presence of phosphonates in the lipid bilayer increases the coefficients of lipid lateral diffusion

Water state and diffusion through lipid bilayers: Effect of hydration degree with the angle between the bilayer normal and magnetic field direction) and water diffusion along the bilayer

31P NMR studies of phospholipids on the composition of phospholipid (PL) membranes, lipid headgroup orientation relative to the bilayers normal

Lateral diffusion of lipids and diffusion of water through lipid bilayers in the presence of (1,1-dimethyl-3-oxobutyl)phosphonates. The presence of phosphonates in the lipid bilayer increases the coefficients of lipid lateral diffusion

Temperature dependence of water self-diffusion through lipid bilayers assessed by NMR water, and 10 times smaller than that for lateral diffusion of lipid under the same conditions

31P NMR studies of phospholipids on the composition of phospholipid (PL) membranes, lipid headgroup orientation relative to the bilayers normal

Temperature dependence of water self-diffusion through lipid bilayers assessed by NMR water, and 10 times smaller than that for lateral diffusion of lipid under the same conditions

Disordering of phospholipid headgroups induced by a small amount of polyethylene oxideWe present a 31P NMR spectroscopy study of planar glass-plate-oriented multi-bilayers

Interaction of polyacrylic acid with lipid bilayers: Effect of polymer mass because of their ability to control the permeability of lipid bilayers by environmental parameters

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