The present work deals with the spatially extended oscillatory Belousov Zhabotinsky reaction−diffusion system carried out in an anisotropic environment of phosphatidylcholines/water binary system, which presents layered aqueous domains separated by lipid bilayers. We report the occurrence of stable Turing patterns, spiral waves, and other exotic structures in phospholipids bilayers that are generally used as a models for cell plasma membranes.

Magnani, A., Marchettini, N., Ristori, S., Rossi, C., Rossi, F., Rustici, M., et al. (2004). Chemical waves and pattern formation in the 1,2-dipalmitol-sn-glycero-3-posphocoline/water lamellar system. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 126(37), 11406-11407 [10.1021/ja047030c].

Chemical waves and pattern formation in the 1,2-dipalmitol-sn-glycero-3-posphocoline/water lamellar system

MAGNANI, AGNESE;MARCHETTINI, NADIA;ROSSI, CLAUDIO;ROSSI, FEDERICO;TIEZZI, ENZO
2004-01-01

Abstract

The present work deals with the spatially extended oscillatory Belousov Zhabotinsky reaction−diffusion system carried out in an anisotropic environment of phosphatidylcholines/water binary system, which presents layered aqueous domains separated by lipid bilayers. We report the occurrence of stable Turing patterns, spiral waves, and other exotic structures in phospholipids bilayers that are generally used as a models for cell plasma membranes.
2004
Magnani, A., Marchettini, N., Ristori, S., Rossi, C., Rossi, F., Rustici, M., et al. (2004). Chemical waves and pattern formation in the 1,2-dipalmitol-sn-glycero-3-posphocoline/water lamellar system. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 126(37), 11406-11407 [10.1021/ja047030c].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/3504
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