most citedSans Study of the Unilamellar DMPC Vesicles. the Fluctuation Model of Lipid Bilayer

6 citations · 8 across the 6 of their papers we have counts for

collaborators

6 papers

physics.bio-ph20051 cited

What can we learn about the lipid vesicle structure from the small-angle neutron scattering experiment? (Investigation DMPC vesicle structure by small angle neutron scattering)

M. A. Kiselev, E. V. Zemlyanaya, V. K. Aswal +1

Small angle neutron scattering (SANS) on the unilamellar vesicle populations (diameter 500 and 1000 angstrom) was used to characterize lipid vesicles from dimyristoylphosphatidylch…

physics.bio-ph20046 cited

Sans Study of the Unilamellar DMPC Vesicles. the Fluctuation Model of Lipid Bilayer

M. A. Kiselev, E. V. Zemlyanaya, V. K. Aswal

On the basis of the separated form-factors model, parameters of the polydispersed unilamellar DMPC vesicle population are analyzed. The neutron scattering length density across the…

physics.chem-ph2004

Structure of Unilamellar Dimyristoylphosphatidylcholine Vesicle. Small-Angle Neutron Scattering Study

E. V. Zemlyanaya, M. A. Kiselev, V. K. Aswal

On the basis of the separated form-factor model, a code for fitting the small-angle neutron scattering spectra of the polydispersed vesicle population has been developed. Vesicle a…

nucl-th20041 cited

Model for Restoration of Heavy-Ion Potentials at Intermediate Energies

K. M. Hanna, K. V. Lukyanov, V. K. Lukyanov +2

Three types of microscopic nucleus-nucleus optical potentials are constructed using three patterns for their real and imaginary parts. Two of these patterns are the real and…

physics.chem-ph2004

Study of the Unilamellar Vesicle Structure via Sans on the Base of the SFF Model

E. V. Zemlyanaya, M. A. Kiselev, J. Zbytovska +6

The parameters of the polydispersed unilamellar vesicle population are analyzed on the basis of the separated form-factors model for three different type of membranes. The neutron…

nlin.PS2004

Nodal two-dimensional solitons in nonlinear parametric resonance

N. V. Alexeeva, E. V. Zemlyanaya

The parametrically driven damped nonlinear Schrödinger equation serves as an amplitude equation for a variety of resonantly forced oscillatory systems on the plane. In this note, w…