All Stories

  1. Clutch model for focal adhesions predicts reduced self-stabilization under oblique pulling
  2. Mechanically-driven stem cell separation in tissues caused by proliferating daughter cells
  3. Author Correction: Sparse inference and active learning of stochastic differential equations from data
  4. Von Schwimmern und Schwärmen
  5. Cells on a string -- Characterization of cellular structure and dynamics through viscoelastic phenotyping
  6. Collective behavior of self-steering active particles with velocity alignment and visual perception
  7. Collective behavior of squirmers in thin films
  8. Motion of microswimmers in cylindrical microchannels
  9. Simultaneous emergence of active turbulence and odd viscosity in a colloidal chiral active system
  10. Hydrodynamic pursuit by cognitive self-steering microswimmers
  11. Dynamics and phase separation of active Brownian particles on curved surfaces and in porous media
  12. Wrapping anisotropic microgel particles in lipid membranes: Effects of particle shape and membrane rigidity
  13. Noisy pursuit by a self-steering active particle in confinement (a)
  14. Computational Physics of Active Matter
  15. Membrane-Mediated Interactions Between Nonspherical Elastic Particles
  16. Dynamic shapes of floppy vesicles enclosing active Brownian particles with membrane adhesion
  17. Sparse inference and active learning of stochastic differential equations from data
  18. Tangentially driven active polar linear polymers—An analytical study
  19. Non-equilibrium dynamics of bacterial colonies—growth, active fluctuations, segregation, adhesion, and invasion
  20. Noisy pursuit and pattern formation of self-steering active particles
  21. Delivering microcargo with artificial microtubules
  22. Dynamics of active polar ring polymers
  23. Alignment and propulsion of squirmer pusher–puller dumbbells
  24. Generic self-stabilization mechanism for biomolecular adhesions under load
  25. Emergence of active turbulence in microswimmer suspensions due to active hydrodynamic stress and volume exclusion
  26. Erythrocyte Sedimentation: Collapse of a High-Volume-Fraction Soft-Particle Gel
  27. Simulating wet active polymers by multiparticle collision dynamics
  28. Blood Rheology and Biomedical Implications
  29. Emergent collective behavior of active Brownian particles with visual perception
  30. Non-equilibrium shapes and dynamics of active vesicles
  31. Correction: Non-equilibrium shapes and dynamics of active vesicles
  32. Editorial: Motile active matter
  33. Active bath-induced localization and collapse of passive semiflexible polymers
  34. Wall-anchored semiflexible polymer under large amplitude oscillatory shear flow
  35. Importance of Viscosity Contrast for the Motion of Erythrocytes in Microcapillaries
  36. The role of thickness inhomogeneities in hierarchical cortical folding
  37. A minimal model for structure, dynamics, and tension of monolayered cell colonies
  38. Tumbling and Vorticity Drift of Flexible Helicoidal Polymers in Shear Flow
  39. Correction: Hydrodynamic interactions in squirmer dumbbells: active stress-induced alignment and locomotion
  40. Effect of cytosol viscosity on the flow behavior of red blood cell suspensions in microvessels
  41. A Bayesian traction force microscopy method with automated denoising in a user-friendly software package
  42. DNA Self-Assembly Mediated by Programmable Soft-Patchy Interactions
  43. Stability of heterogeneous parallel-bond adhesion clusters under load
  44. Instability and fingering of interfaces in growing tissue
  45. The physics of active polymers and filaments
  46. Filamentous active matter: Band formation, bending, buckling, and defects
  47. Stochastic bond dynamics facilitates alignment of malaria parasite at erythrocyte membrane upon invasion
  48. Computational models for active matter
  49. Tissue evolution: mechanical interplay of adhesion, pressure, and heterogeneity
  50. Dissipative particle dynamics with energy conservation: Isoenergetic integration and transport properties
  51. Osmotic Concentration-Controlled Particle Uptake and Wrapping-Induced Lysis of Cells and Vesicles
  52. Hydrodynamics in Motile Active Matter
  53. Chiral-filament self-assembly on curved manifolds
  54. Multiscale Modeling of Malaria-Infected Red Blood Cells
  55. Vesicles with internal active filaments: self-organized propulsion controls shape, motility, and dynamical response
  56. Hydrodynamic correlations of viscoelastic fluids by multiparticle collision dynamics simulations
  57. Simulating membranes, vesicles, and cells
  58. From Modeling Nanoparticle–Membrane Interactions toward Nanotoxicology
  59. Deformation and dynamics of erythrocytes govern their traversal through microfluidic devices with a deterministic lateral displacement architecture
  60. Mechanics of tissue competition: interfaces stabilize coexistence
  61. Local stress and pressure in an inhomogeneous system of spherical active Brownian particles
  62. Active Brownian ring polymers
  63. Sharp-edged geometric obstacles in microfluidics promote deformability-based sorting of cells
  64. High Troughput Microfluidic Characterization of Erythrocyte Shapes and Mechanical Variability
  65. Traction force microscopy with optimized regularization and automated Bayesian parameter selection for comparing cells
  66. Sperm motility in modulated microchannels
  67. Chronology of motor-mediated microtubule streaming
  68. State diagram for wall adhesion of red blood cells in shear flow: from crawling to flipping
  69. Substrate-rigidity dependent migration of an idealized twitching bacterium
  70. Flow-Induced Transitions of Red Blood Cell Shapes under Shear
  71. Collective behavior of self-propelled rods with quorum sensing
  72. Active Brownian Filamentous Polymers under Shear Flow
  73. Nanoparticle-Decorated Erythrocytes Reveal That Particle Size Controls the Extent of Adsorption, Cell Shape, and Cell Deformability
  74. Microscopic Models of Microemulsions
  75. Steady state sedimentation of ultrasoft colloids
  76. Confined active Brownian particles: theoretical description of propulsion-induced accumulation
  77. Hydrodynamics in Motile Active Matter
  78. Interaction of Particles and Pathogens with Biological Membranes
  79. Multiscale Modeling of Malaria-Infected Red Blood Cells
  80. Clustering and dynamics of particles in dispersions with competing interactions: theory and simulation
  81. Clustering of microswimmers: interplay of shape and hydrodynamics
  82. Hydrodynamics of binary-fluid mixtures —An augmented Multiparticle Collison Dynamics approach
  83. Collective dynamics of self-propelled semiflexible filaments
  84. Spatial correlations of hydrodynamic fluctuations in simple fluids under shear flow: A mesoscale simulation study
  85. Human sperm steer with second harmonics of the flagellar beat
  86. Margination and stretching of von Willebrand factor in the blood stream enable adhesion
  87. Active Polymers — Emergent Conformational and Dynamical Properties: A Brief Review
  88. Modeling the cleavage of von Willebrand factor by ADAMTS13 protease in shear flow
  89. Enhanced Dynamics of Confined Cytoskeletal Filaments Driven by Asymmetric Motors
  90. Nano- and microparticles at fluid and biological interfaces
  91. Internal dynamics of semiflexible polymers with active noise
  92. Complex self-propelled rings: a minimal model for cell motility
  93. Propagating interfaces in mixtures of active and passive Brownian particles
  94. Red cells’ dynamic morphologies govern blood shear thinning under microcirculatory flow conditions
  95. Microswimmers near surfaces
  96. Sorting cells by their dynamical properties
  97. Conformational Properties of Active Semiflexible Polymers
  98. Interface dynamics of competing tissues
  99. From local to hydrodynamic friction in Brownian motion: A multiparticle collision dynamics simulation study
  100. Dynamics of self-propelled filaments pushing a load
  101. Modeling a spheroidal microswimmer and cooperative swimming in a narrow slit
  102. Understanding particle margination in blood flow – A step toward optimized drug delivery systems
  103. Preface: Special Topic on Coarse Graining of Macromolecules, Biopolymers, and Membranes
  104. Publisher’s Note: “Self-organization in suspensions of end-functionalized semiflexible polymers under shear flow” [J. Chem. Phys. 143, 243117 (2015)]
  105. Effect of angular momentum conservation on hydrodynamic simulations of colloids
  106. Physical Sensing of Surface Properties by Microswimmers – Directing Bacterial Motion via Wall Slip
  107. Microvascular blood flow resistance: Role of red blood cell migration and dispersion
  108. Physics of microswimmers—single particle motion and collective behavior: a review
  109. Run-and-tumble dynamics of self-propelled particles in confinement
  110. Thermostat for nonequilibrium multiparticle-collision-dynamics simulations
  111. Smoothed dissipative particle dynamics with angular momentum conservation
  112. Correction: Wrapping of ellipsoidal nano-particles by fluid membranes
  113. Conformations, hydrodynamic interactions, and instabilities of sedimenting semiflexible filaments
  114. Modelling the mechanics and hydrodynamics of swimming E. coli
  115. Virial pressure in systems of spherical active Brownian particles
  116. Self-propelled worm-like filaments: spontaneous spiral formation, structure, and dynamics
  117. Rheological Properties of Sheared Vesicle and Cell Suspensions
  118. Dynamical and rheological properties of soft colloid suspensions
  119. Capillary Assembly of Microscale Ellipsoidal, Cuboidal, and Spherical Particles at Interfaces
  120. Scaffold Structures by Telechelic Rodlike Polymers: Nonequilibrium Structural and Rheological Properties under Shear Flow
  121. HYDRODYNAMICS MEDIATED COLLECTIVE MOTIONS IN POPULATIONS OF MICRODROPLETS
  122. Conformational State Distributions and Catalytically Relevant Dynamics of a Hinge-Bending Enzyme Studied by Single-Molecule FRET and a Coarse-Grained Simulation
  123. Hydrodynamics of discrete-particle models of spherical colloids: A multiparticle collision dynamics simulation study
  124. Hydrodynamic correlations and diffusion coefficient of star polymers in solution
  125. Motility-sorting of self-propelled particles in microchannels
  126. Interfacing Electrogenic Cells with 3D Nanoelectrodes: Position, Shape, and Size Matter
  127. Membrane-Wrapping Contributions to Malaria Parasite Invasion of the Human Erythrocyte
  128. Structure and Dynamics of a Compact State of a Multidomain Protein, the Mercuric Ion Reductase
  129. Self-Organized Structures of Attractive End-Functionalized Semiflexible Polymer Suspensions
  130. Mode coupling of phonons in a dense one-dimensional microfluidic crystal
  131. Margination of micro- and nano-particles in blood flow and its effect on drug delivery
  132. Nonequilibrium structure and dynamics in a microscopic model of thin-film active gels
  133. The computational sperm cell
  134. Shape and Orientation Matter for the Cellular Uptake of Nonspherical Particles
  135. Cooperative motion of active Brownian spheres in three-dimensional dense suspensions
  136. Multiparticle collision dynamics: GPU accelerated particle-based mesoscale hydrodynamic simulations
  137. Self-organized vortices of circling self-propelled particles and curved active flagella
  138. Deformation and dynamics of red blood cells in flow through cylindrical microchannels
  139. White blood cell margination in microcirculation
  140. Collective behavior of penetrable self-propelled rods in two dimensions
  141. Mesoscale hydrodynamics simulations of particle suspensions under shear flow: From hard to ultrasoft colloids
  142. Dynamical and Rheological Properties of Ultrasoft Colloids under Shear Flow
  143. Synchronization, Slippage, and Unbundling of Driven Helical Flagella
  144. Fluctuation pressure of biomembranes in planar confinement
  145. Structure formation of surfactant membranes under shear flow
  146. Multiscale modeling of blood flow: from single cells to blood rheology
  147. Confinement Effects in Block Copolymer Modified Bicontinuous Microemulsions
  148. Spindles and Active Vortices
  149. Effect of hydrodynamic correlations on the dynamics of polymers in dilute solution
  150. Dynamics and rheology of vesicle suspensions in wall-bounded shear flow
  151. Emergence of metachronal waves in cilia arrays
  152. Hydrodynamic mechanisms of spinodal decomposition in confined colloid-polymer mixtures: A multiparticle collision dynamics study
  153. Wall accumulation of self-propelled spheres
  154. Sedimentation of single red blood cells
  155. Wrapping of ellipsoidal nano-particles by fluid membranes
  156. Red Blood Cell Membrane Fluctuations and their Mechanisms: Passive Versus Active
  157. Non-Equilibrium Properties of Semidilute Polymer Solutions under Shear Flow
  158. Hydrodynamic correlations in multiparticle collision dynamics fluids
  159. Fluctuating shells under pressure
  160. Confinement-induced screening of hydrodynamic interactions and spinodal decomposition: Multiscale simulations of colloid-polymer mixtures
  161. Conformational and dynamical properties of ultra-soft colloids in semi-dilute solutions under shear flow
  162. Flow-Induced Helical Coiling of Semiflexible Polymers in Structured Microchannels
  163. Ordering and arrangement of deformed red blood cells in flow through microcapillaries
  164. Non-equilibrium relaxation and tumbling times of polymers in semidilute solution
  165. Monte Carlo Studies of C60- and C70-Peapods
  166. Scattering intensity of bicontinuous microemulsions and sponge phases
  167. Margination of White Blood Cells in Microcapillary Flow
  168. Simple and Complex Micelles in Amphiphilic Mixtures: A Coarse-Grained Mean-Field Study
  169. Semidilute solutions of ultra-soft colloids under shear flow
  170. Synchronization and bundling of anchored bacterial flagella
  171. Spindles and active vortices in a model of confined filament-motor mixtures
  172. Mesoscale hydrodynamic modeling of a colloid in shear-thinning viscoelastic fluids under shear flow
  173. Nonequilibrium Forces between Dragged Ultrasoft Colloids
  174. Publisher’s Note: Dynamic self-assembly and directed flow of rotating colloids in microchannels [Phys. Rev. E 84 , 031404 (2011)]
  175. Dynamic self-assembly and directed flow of rotating colloids in microchannels
  176. Response to Comment on Article: Hydrodynamics of Sperm Cells Near Surfaces
  177. A Monte Carlo study of C70 molecular motion in C70@SWCNT peapods
  178. Dynamics of a polymer chain confined in a membrane
  179. Compression, crumpling and collapse of spherical shells and capsules
  180. Semiflexible polymer conformation, distribution and migration in microcapillary flows
  181. Bilayers Connected by Threadlike Micelles in Amphiphilic Mixtures: A Self-Consistent Field Theory Study
  182. Near-surface structure of a bicontinuous microemulsion with a transition region
  183. Tumbling of polymers in semidilute solution under shear flow
  184. Microscopic basis for pattern formation and anomalous transport in two-dimensional active gels
  185. Deformation and clustering of red blood cells in microcapillary flows
  186. Semidilute Polymer Solutions at Equilibrium and under Shear Flow
  187. Flow generation by rotating colloids in planar microchannels
  188. Mesoscale simulations of hydrodynamic squirmer interactions
  189. Fluctuations of a long, semiflexible polymer in a narrow channel
  190. Swarm behavior of self-propelled rods and swimming flagella
  191. Molecular ordering in C70@CNT nanopeapods
  192. Hydrodynamics of Sperm Cells near Surfaces
  193. Migration of semiflexible polymers in microcapillary flow
  194. Effects of an embedding bulk fluid on phase separation dynamics in a thin liquid film
  195. Lipid membranes with transmembrane proteins in shear flow
  196. Multi-particle collision dynamics simulations of sedimenting colloidal dispersions in confinement
  197. Hydrodynamic interactions in rod suspensions with orientational ordering
  198. Budding and Vesiculation Induced by Conical Membrane Proteins
  199. Dynamics of fluid vesicles in flow through structured microchannels
  200. Cell-level canonical sampling by velocity scaling for multiparticle collision dynamics simulations
  201. Budding and vesiculation induced by conical membrane inclusions
  202. Dynamical regimes and hydrodynamic lift of viscous vesicles under shear
  203. Jülich Soft Matter Days 2008
  204. Orientational ordering in solid C60 fullerene-cubane
  205. Flow-induced clustering and alignment of vesicles and red blood cells in microcapillaries
  206. Twist grain boundaries in cubic surfactant phases
  207. Self-propelled rods near surfaces
  208. Direct observation of hydrodynamic instabilities in a driven non-uniform colloidal dispersion
  209. Cooperation of sperm in two dimensions: Synchronization, attraction, and aggregation through hydrodynamic interactions
  210. Attractive Colloidal Rods in Shear Flow
  211. Mesoscale hydrodynamics simulations of attractive rod-like colloids in shear flow
  212. Fullerene‐cubane: X‐ray Scattering Experiments and Monte Carlo Simulations
  213. Monte Carlo simulations of fullerene-cubane
  214. Mesoscale simulations of polymer dynamics in microchannel flows
  215. Transport coefficients of off-lattice mesoscale-hydrodynamics simulation techniques
  216. Editorial[24pt] A unified view of soft matter systems?
  217. Multiparticle collision dynamics modeling of viscoelastic fluids
  218. Two-dimensional fluctuating vesicles in linear shear flow
  219. Multi-Particle Collision Dynamics: A Particle-Based Mesoscale Simulation Approach to the Hydrodynamics of Complex Fluids
  220. Mechanical properties of icosahedral virus capsids
  221. Relevance of angular momentum conservation in mesoscale hydrodynamics simulations
  222. Hydrodynamic screening of star polymers in shear flow
  223. Free energy and extension of a semiflexible polymer in cylindrical confining geometries
  224. Transport coefficients of dissipative particle dynamics with finite time step
  225. Defect Scars on Flexible Surfaces with Crystalline Order
  226. Swinging and Tumbling of Fluid Vesicles in Shear Flow
  227. Particle-based mesoscale hydrodynamic techniques
  228. SANS studies of confined diblock copolymers in microemulsions
  229. Dynamics of vesicle self-assembly and dissolution
  230. Mechanical Deformation of Spherical Viruses with Icosahedral Symmetry
  231. Mixing A and B Homopolymers with AC Diblock Copolymers:  Phase Behavior of Asymmetric Polymer Blends
  232. Star Polymers in Shear Flow
  233. Publisher's Note: Meshless membrane model based on the moving least-squares method [Phys. Rev. E 73 , 021903 (2006)]
  234. Meshless membrane model based on the moving least-squares method
  235. Forced crumpling of self-avoiding elastic sheets
  236. Soft Matter Vol. 1
  237. Soft Matter Vol. 2
  238. Vesicle dynamics in shear and capillary flows
  239. Dynamics of polymers in a particle-based mesoscopic solvent
  240. Shape transitions of fluid vesicles and red blood cells in capillary flows
  241. Fluctuation spectrum of membranes with anchored linear and star polymers
  242. Dynamics of fluid vesicles in shear flow: Effect of membrane viscosity and thermal fluctuations
  243. Dynamic regimes of fluids simulated by multiparticle-collision dynamics
  244. Simulation of complex fluids by multi-particle-collision dynamics
  245. DNA condensation and redissolution: interaction between overcharged DNA molecules
  246. Shapes of crystalline domains on spherical fluid vesicles
  247. Fluid Vesicles with Viscous Membranes in Shear Flow
  248. DNA condensation, redissolution and mesocrystals induced by tetravalent counterions
  249. Helical polymer in cylindrical confining geometries
  250. Low-Reynolds-number hydrodynamics of complex fluids by multi-particle-collision dynamics
  251. Rod-like colloids and polymers in shear flow: a multi-particle-collision dynamics study
  252. Efficiency boosting and optional viscosity tuning in microemulsions studied by SANS
  253. SANS studies of polymer efficiency boosting in microemulsions—diblock copolymers versus homopolymers
  254. TRIANGULATED-SURFACE MODELS OF FLUCTUATING MEMBRANES
  255. Attraction between DNA molecules mediated by multivalent ions
  256. Budding of crystalline domains in fluid membranes
  257. Adsorption of monovalent and multivalent cations and anions on DNA molecules
  258. Self-avoiding linear and star polymers anchored to membranes
  259. Advanced Flicker Spectroscopy of Fluid Membranes
  260. Erratum: Mesoscopic solvent simulations: Multiparticle-collision dynamics of three-dimensional flows [Phys. Rev. E66, 036702 (2002)]
  261. Komplexe Materialien auf mesoskopischer Skala: Was ist Weiche Materie?
  262. Eine Welt zwischen Fest und Flüssig: Aktuelle Forschung an Weicher Materie
  263. Amphiphilic block copolymers as efficiency boosters in microemulsions: a SANS investigation of the role of polymers
  264. Neutron spin-echo investigation of the microemulsion dynamics. in bicontinuous, lamellar and droplet phases
  265. Numerical study of the flow around a cylinder using multi-particle collision dynamics
  266. Giant Hexagonal Superstructures in Diblock-Copolymer Membranes
  267. Elastic properties of polymer interfaces: Aggregation of pure diblock, mixed diblock, and triblock copolymers
  268. Wetting in ternary mixtures—with and without amphiphiles
  269. Mesoscopic solvent simulations: Multiparticle-collision dynamics of three-dimensional flows
  270. Phase behavior of two-component membranes
  271. The freezing transition of flexible membranes
  272. Bicontinuous Surfaces in Self-assembling Amphiphilic Systems
  273. Erratum: Multi-particle collision dynamics: Flow around a circular and a square cylinder
  274. Measuring bending rigidity and spatial renormalization in bicontinuous microemulsions
  275. Dynamics of bicontinuous microemulsion phases with and without amphiphilic block-copolymers
  276. Semiflexible polymer in a uniform force field in two dimensions
  277. Multi-particle collision dynamics: Flow around a circular and a square cylinder
  278. Amphiphilic block copolymers in oil-water-surfactant mixtures: efficiency boosting, structure, phase behaviour and mechanism
  279. Shape transformations of two-component membranes under weak tension
  280. Effect of amphiphilic block copolymers on the structure and phase behavior of oil–water-surfactant mixtures
  281. Budding Dynamics of Multicomponent Membranes
  282. Bending Frustration of Lipid−Water Mesophases Based on Cubic Minimal Surfaces 1
  283. Dynamics of the swollen lamellar phase
  284. Stability of Inverse Bicontinuous Cubic Phases in Lipid-Water Mixtures
  285. Membrane Decoration by Amphiphilic Block Copolymers in Bicontinuous Microemulsions
  286. Stability of bicontinuous cubic phases in ternary amphiphilic systems with spontaneous curvature
  287. Statistical mechanics of membranes: freezing, undulations, and topology fluctuations
  288. Melting transition of a network model in two dimensions
  289. Modulated phases in multicomponent fluid membranes
  290. Lattice-Boltzmann study of spontaneous emulsification
  291. Systematic approach to bicontinuous cubic phases in ternary amphiphilic systems
  292. Shapes and shape transformations of two-component membranes of complex topology
  293. Mobility and Elasticity of Self-Assembled Membranes
  294. Membranes with Fluctuating Topology: Monte Carlo Simulations
  295. Lattice-Boltzmann model of amphiphilic systems
  296. Composition-Driven Shape Transformations of Membranes of Complex Topology
  297. The Freezing of Flexible Vesicles of Spherical Topology
  298. Network models of fluid, hexatic and polymerized membranes
  299. Fluctuations of polymerized, fluid and hexatic membranes: Continuum models and simulations
  300. Freezing Flexible Vesicles
  301. Patterns of stress in crumpled sheets
  302. Scaling ridges
  303. The lamellar-to-isotropic transition in ternary amphiphilic systems
  304. Dynamical behavior of microemulsion and sponge phases in thermal equilibrium
  305. Random Surface Discretizations and the Renormalization of the Bending Rigidity
  306. Ginzburg-Landau Theories of Ternary Amphiphilic Systems
  307. Driven transport of fluid vesicles through narrow pores
  308. Reply to ‘‘Comment on ‘Fluctuating interfaces in microemulsion and sponge phases’ ’’
  309. Polymer and vesicle conformation and scaling in elongational flow fields
  310. Phase diagram and scattering intensity of binary amphiphilic systems
  311. Fluctuations and Phase Behavior of Passages in a Stack of Fluid Membranes
  312. STRUCTURE, TOPOLOGY AND PHASE BEHAVIOUR OF AMPHIPHILIC SYSTEMS
  313. Layering, dewetting, and first‐order wetting in ternary amphiphilic systems
  314. Phase diagram and scaling behavior of fluid vesicles
  315. Phase Diagram of Fluid Vesicles
  316. Dynamic Structure Factor of Microemulsions
  317. ‘‘Confined’’ water and hydrophobic attraction as a result of metastable coordination, stabilized by hydrophobic surfaces
  318. Fluctuating interfaces in microemulsion and sponge phases
  319. Equilibrium dynamics of microemulsion and sponge phases
  320. Statistische Physik von Zufallsflächen
  321. Internal structure of microemulsions and sponge phases
  322. Scattering from internal interfaces in microemulsion and sponge phases
  323. Sound Attenuation and Dispersion in Microemulsions
  324. Lattice Theories of Microemulsions
  325. Floppy fluid vesicles in elongational flow
  326. Topological defects in lamellar phases: passages, and their fluctuations
  327. Ginzburg-Landau theory of ternary amphiphilic systems. II. Monte Carlo simulations
  328. Ginzburg-Landau theory of ternary amphiphilic systems. I. Gaussian interface fluctuations
  329. Floppy Tethered Networks
  330. The Conformation of Fluid Vesicles
  331. Shape of inflated vesicles
  332. Ginzburg-Landau theory of oil-water-surfactant mixtures
  333. Scaling behavior of randomly triangulated self-avoiding surfaces
  334. Ginzburg-Landau theory of aqueous surfactant solutions
  335. Inflated Vesicles: A New Phase of Fluid Membranes
  336. Variation with amphiphilic strength of the properties of ternary mixtures
  337. Edge correlations of fluid and tethered membranes
  338. The conformation of fluid membranes: Monte Carlo simulations
  339. Bulk and Interfacial Properties of Amphiphilic Systems: A Ginzburg-Landau Approach
  340. Ginzburg-Landau Theory of Bulk and Interfacial Properties of Amphiphilic Systems
  341. Elastic Properties of Interfaces in a Ginzburg-Landau Theory of Swollen Micelles, Droplet Crystals and Lamellar Phases
  342. Fluctuations of a polymerized membrane between walls
  343. A Polymerized Membrane in Confined Geometry
  344. Interfacial properties of amphiphilic systems: The approach to Lifshitz points
  345. Unbinding Transitions of Polymers or Membranes in Two Dimensions
  346. Unbinding transition of flexible Gaussian polymers in two dimensions
  347. Correlation between structural and interfacial properties of amphiphilic systems
  348. Lattice model of microemulsions: The effect of fluctuations in one and two dimensions
  349. Nonclassical wetting behavior in the solid-on-solid limit of the three-dimensional Ising model
  350. Lattice model of microemulsions
  351. Unbinding transition of semiflexible membranes in (1+1) dimensions
  352. Phase and scattering behavior of disordered aqueous surfactant solutions as the binary limit of ternary microemulsions
  353. Surface melting and surface-induced-disorder transitions in thin films: The effect of hidden variables
  354. Steric Interactions in Multimembrane Systems: A Monte Carlo Study
  355. Microemulsion structure from a three-component lattice model
  356. Finite-size effects at wetting transitions
  357. Wetting in fcc Ising antiferromagnets and binary alloys. II. A Monte Carlo and renormalization-group study
  358. Monte Carlo study of nonuniversal wetting behavior in (2+1) dimensions
  359. Critical Behaviour of Effective Interface Models for Wetting in Three Dimensions
  360. Wetting in fcc Ising antiferromagnets and binary alloys
  361. Grazing incidence diffraction of X-rays at a Si single crystal surface: Comparison of theory and experiment
  362. Universal amplitudes for critical surface scattering
  363. Conformal invariance in semi-infinite systems: Application to critical surface scattering
  364. Universal relations among critical amplitudes of surface quantities
  365. Scaling functions for critical surface scattering
  366. Interface delocalization transitions in finite systems
  367. An Introduction to Soft Matter