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Biochemistry|July 15, 1986
Hydration force and bilayer deformation: a reevaluationT J McIntosh, S A SimonProceedings of the National Academy of Sciences of the United States of America|December 1, 1989
Magnitude of the solvation pressure depends on dipole potentialS A Simon, T J McIntoshBiochimica Et Biophysica Acta|April 26, 1991
Surface ripples cause the large fluid spaces between gel phase bilayers containing small amounts of cholesterolS A Simon, T J McIntoshBiochemistry|August 26, 1986
Area per molecule and distribution of water in fully hydrated dilauroylphosphatidylethanolamine bilayersT J McIntosh, S A SimonBiochemistry|August 17, 1993
Contributions of hydration and steric (entropic) pressures to the interactions between phosphatidylcholine bilayers: experiments with the subgel phaseT J McIntosh, S A SimonBiochemistry|August 30, 1994
Long- and short-range interactions between phospholipid/ganglioside GM1 bilayersT J McIntosh, S A SimonBiochimica Et Biophysica Acta|June 13, 1984
Interdigitated hydrocarbon chain packing causes the biphasic transition behavior in lipid/alcohol suspensionsS A Simon, T J McIntoshBiochemistry|September 2, 1998
Modulation of the binding of signal peptides to lipid bilayers by dipoles near the hydrocarbon-water interfaceL Voglino, T J McIntosh, S A SimonBiophysical Journal|October 1, 1995
Temperature dependence of the repulsive pressure between phosphatidylcholine bilayersS A Simon, S Advani, T J McIntoshBiochemical Society Transactions|August 11, 2001
The energetics of binding of a signal peptide to lipid bilayers: the role of bilayer propertiesT J McIntosh, A Vidal, S A SimonPageof 18