Surface tension in bilayer membranes with fixed projected area.
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Summary
This work studies the elastic response of bilayer membranes with fixed projected area to both the stretching and shape deformations and introduces a simple theory which relates the two quantities and successfully applies it to the data obtained with computer simulations.
- Type
- article
- Published
- 2005-10-11
- Cited by
- 35
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W16674258
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25418810
Keywords
Derecho, Humanities, Philosophy
References
- CRC handbook of lipid bilayers
- Lateral and transverse diffusion in two-component bilayer membranes
- Encyclopedia of Applied Physics
- The Statistical Mechanical Theory of Surface Tension
- Spatial and energetic-entropic decomposition of surface tension in lipid bilayers from molecular dynamics simulations
- Fluctuations of membranes with vanishing surface tension
- Mobility and elasticity of self-assembled membranes.
- Shape fluctuations and elastic properties of two-component bilayer membranes
- Computer simulations of bilayer membranes - self-assembly and interfacial tension.
- Correlations in simulated model bilayers.
- Statistical mechanics of inhomogeneous fluids
- Statistical Thermodynamics Of Surfaces, Interfaces, And Membranes
- Vanishing tension of fluctuating membranes
- The minimum energy of bending as a possible explanation of the biconcave shape of the human red blood cell.
- Frequency spectrum of the flicker phenomenon in erythrocytes
- Effect of Undulations on Surface Tension in Simulated Bilayers
- Molecular Biology of the Cell
- The effect of thermal fluctuations on Schulman area elasticity
- Molecular dynamics simulation of a smectic liquid crystal with atomic detail
- Statistical mechanics of bilayer membrane with a fixed projected area.
Cited by
- Forces and fluctuations in planar, spherical and tubular membranes
- Coarse-grained simulations of membranes under tension.
- Thermal fluctuations and bending rigidity of bilayer membranes.
- Direct calculation from the stress tensor of the lateral surface tension of fluctuating fluid membranes.
- On the surface tension of fluctuating quasi-spherical vesicles
- Undulation contributions to the area compressibility in lipid bilayer simulations.
- Thermal fluctuations in shape, thickness, and molecular orientation in lipid bilayers. II. Finite surface tensions.
- Mechanical surface tension governs membrane thermal fluctuations.
- Thermal fluctuations in shape, thickness, and molecular orientation in lipid bilayers.
- On the fluctuations of the force exerted by a lipid nanotubule
- Shape and area fluctuation effects on nucleation theory.
- Lipids on the move: simulations of membrane pores, domains, stalks and curves.
- Coupling of bending and stretching deformations in vesicle membranes.
- Size dependence, stability, and the transition to buckling in model reverse bilayers.
- Tension moderation and fluctuation spectrum in simulated lipid membranes under an applied electric potential.
- Fluctuations in lipid bilayers: Are they understood?
- Note: On the power spectrum of undulations of simulated bilayers.
- Spontaneous curvature of bilayer membranes from molecular simulations: asymmetric lipid densities and asymmetric adsorption.
- Surface tension and Laplace pressure in triangulated surface models for membranes without fixed boundary
- Interplay of curvature-induced micro- and nanodomain structures in multicomponent lipid bilayers
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