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- W1964830416 abstract "Photoelectric and magneto-orientation effects in pigmented biological membranes are analyzed and discussed with special reference to three different levels of order in the membrane structures. The kinetic results of photoelectric responses from an artificial pigmented bilayer lipid membrane/aqueous redox system, measured by a tunable voltage clamp method are analyzed in terms of an equivalent circuit model which contains a novel chemical capacitance. The molecular basis of the equivalent circuit and the concept of chemical capacitance is established by a combined kinetic and electrostatic calculation, using Gouy-Chapman diffuse double layer theory. The generality of the concept of chemical capacitance is demonstrated by the ability of the model to explain previously reported data on a variety of pigmented membranes. The theory is further applied to photoelectric effects in three important photobiological systems: photosynthetic membranes of chloroplasts, visual disc membranes of rod outer segments, and purple membranes of Halobacterium halobium. Structure-function correlation is also stressed. Magneto-orientation effects in isolated rod outer segments and in Chlorella cells are discussed on the basis of summed diamagnetic anisotropy. The relation of this effect to the mechanism of bird orientation and navigation in the terrestrial magnetic field is speculated upon." @default.
- W1964830416 created "2016-06-24" @default.
- W1964830416 creator A5070036793 @default.
- W1964830416 date "1977-03-01" @default.
- W1964830416 modified "2023-09-27" @default.
- W1964830416 title "Photoelectric and magneto-orientation effects in pigmented biological membranes" @default.
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