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Titlebook: Biophysics of the Cell Surface; Roland Glaser,David Gingell Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 Grenzfläche

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期刊全称Biophysics of the Cell Surface
影响因子2023Roland Glaser,David Gingell
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学科分类Springer Series in Biophysics
图书封面Titlebook: Biophysics of the Cell Surface;  Roland Glaser,David Gingell Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 Grenzfläche
影响因子It is common practice to publish conference papers in books or monograph series. This gives some advantage to those who did not have the opportunity to attend the meetings, but it irritates and disappoints others who may have hoped for a set of closely related reviews. With this book we have tried to find a compromise. It presents a selection from the topics which have been discussed in a series of inter­ national symposia entitled "Biophysics of Cell Surface", held in 1976, 1978, 1981, 1985 and 1988 in the GDR, and subsequently published in the journal STUDIA BIOPHYSICA (volumes 56, 74, 90, 110, 1271. Nearly all the contributors to this book participated in one or more of the meetings. We hope that our choice of topics selected for this book manages to reflect the variety and interest of the broad range of subjects which fall within the scope of membrane biophysics, without taking on the randomness of a scientific car-boot sale. We would like to express our thanks to all colleagues and organ~ isations who helped to realize the conferences and particularly this book. financial support for the symposia of 1985 and 1988 was provided by the IUPAB. A number of topics, reflected in this
Pindex Conference proceedings 1990
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https://doi.org/10.1007/978-3-030-61270-2parating numerous compartments inside it. They act as barriers separating different phases as well as being surfaces which can carry arrays of functional proteins, like elements on an electronic current board. Artificial membranes can be made and studied in the laboratory. This plethora of membranes
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Armando Barrientos,Martin Powellcell compartments. According to the ‘fluid-mosaic’ model (Singer and Nicolson 1972), the lipid bilayer phase of biological membranes was considered as a homogenous ‘floor’ serving only as a building block of biological membranes. Intrinsic and extrinsic proteins were considered as responsible for th
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Catherine LaBrenz,Miguel Arévalo-Contrerasordered fluid of the bilayer. Most commonly cited is the fluid mosaic model of Singer and Nicolson (1972). This model originated with studies of membrane composition, based on an earlier, static, picture of membrane architecture (for a historical review see Gennis, 1988). “Mosaic” indicates that the
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Catherine LaBrenz,Miguel Arévalo-Contrerastion forces can reach out many Angstroms between surfaces, then realizing that hydration is an important factor in mechanical properties and even in lamellar vs. non-lamellar morphology, one realizes that interaction with water is essential to the natural life of lipids. Surface hydration is surely
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Freeda Jusino-Sierra,Iván De-Jesús-Rosaome possible in the late 1980s. Using the Lifshitz approach, it could be demonstrated that the surface tension components associated with the three electrodynamic (van der Waals) interactions, i.e., the dispersion (London), induction (Debye) and orientation (Keesom) forces, follow the same equations
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