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- W2083503516 endingPage "7794" @default.
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- W2083503516 abstract "A lipid-bilayer membrane in the fluid phase when agitated by ambient fluids not only undergoes a shape fluctuation but also a two-dimensional disordered flow. Thus, besides moving individually, lipid molecules in a two-dimensional fluid element can move collectively in the lateral direction. This collective motion, which has been often overlooked in studying diffusion in a fluid membrane, can shift a lipid molecule as well as its Brownian motion. Calculating the self-diffusion constant of a passive scalar—a particle convected neither affecting the flow nor making the Brownian motion—in a fluid membrane fluctuating around a plane in aqueous environments, we show that the collective motion cannot be neglected in explaining observed values of the self-diffusion constant of a lipid molecule." @default.
- W2083503516 created "2016-06-24" @default.
- W2083503516 creator A5072989685 @default.
- W2083503516 date "2002-04-25" @default.
- W2083503516 modified "2023-10-18" @default.
- W2083503516 title "Passive-scalar diffusion in a fluid membrane" @default.
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- W2083503516 doi "https://doi.org/10.1063/1.1467895" @default.
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