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Биогенный магнетит и магниторецепция. Новое о биомагнетизме. Том 1 - Киршвинк Дж.

Киршвинк Дж., Джонса Д. Биогенный магнетит и магниторецепция. Новое о биомагнетизме. Том 1 — М.: Мир, 1989. — 353 c.
ISBN 5-03-001274-5
Скачать (прямая ссылка): biogenniymagnetit1989.djvu
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Lowenstam H. A. (1968). Weddellite in a marine gastropod and in antarctic sediments, Science, 162, 1129-1130.
Lowenstam H.A. (1972). Phosphate hard tissue of marine invertebrates: Their nature and mechanical function, and some fossil implications, Chem. Geol., 9, 153- 166.
Lowenstam H.A. (1974). Impact of life on chemical and physical processes. In: The Sea, Vol. 5 (E. D. Goldberg, ed.), Wiley, New York, pp. 715 796.
Lowenstam H. A., 1980. Bioinorganic constituents of hard parts. In: Biogeochemistry of Amino Acids (P.E. Hare, T. D. Hoering, and K. King, Jr., eds.), Wiley, New York, pp. 3-16.
Lowenstam H.A. (1981). Minerals formed by organisms, Science, 211, 1126-1131.
Lowenstam H. A., 1984. Biomineralization processes and products and the evolution of biomineralization, 27th Int. Geol. Congr. Sect. Paleontol. Theme, C.02.1.5.
Lowenstam H.A., McConnell D. (1968). Biologic precipitation of fluorite, Science, 162, 1496-1498.
Lowenstam H. A., Margulis L. (1980). Evolutionary prerequisites for early Pha-nerozoic calcareous skeletons, BioSystems, 12, 27-41.
Lowenstam H. A., Rossman G.R. (1975). Amorphous, hydrous, ferric phosphatic dermal granules in Molpadia (Holothuroidea): Physical and chemical characterization, and ecologic implication of the bioinorganic fraction, Chem. Geol., 15, 15-51.
Lowenstam H.A., Weiner S., 1983. Mineralization by organisms, and the evolution of biomineralization. In: Biomineralization and Biological Metal Accumulation (P. Westbroek and E. W. de Jong, eds.), Reidel, Dordrecht, pp. 191-203.
Margulis L., 1981. Symbiosis in Cell Evolution, Freeman, San Francisco.
Matsuda Т., Endo J., Osakabe N.. Tonomura A., Arii T. (1983). Morphology and structure of biogenic magnetite particles, Nature, 302, 411 412.
Milliman J.D., 1974. Marine Carbonates, Springer-Verlag, Berlin, pp. 52-147.
Mook D. (1983). Homing the West Indian chiton Ancanthopleura granulata Gmelin, 1791, Veliger, 26, 101 105.
NealsonK.H., 1984. The microbial iron cycle. In: Microbial Geochemistry (W. E. Krumbein, ed.), Blackwell, Oxford, pp. 159-190.
Nesson M.H., 1969. Studies on radulae tooth mineralization in the Polyplacophora, Ph. D. thesis,. California Institute of Technology, Pasadena.
Peat A., Banbury G.H. (1968). Occurrence of ferritin-like particles in a fungus, Planta, 79, 268-270.
Skyring G. W., Donnelly Т. H. (1982). Precambrian sulfur isotopes and a possible role for sulfite in the evolution of biological sulfate reduction, Precambrian Res., 17, 41-61.
Stevenson D. J., 1983. The nature of the earth prior to the oldest known rock record: The hadean earth. In: Earth’s Earliest Biosphere (J. W. Schopf, ed.), Princeton University Press, Princeton N.J., pp. 32-40.
Stiefel E.I., Watt G.D. (1979). Azotobacter cytochrome 6557.5 is a bacterioferritin, Nature, 279, 81-83.
Thode H.G., Kleerekoper H., McElcheran O. (1951). Isotopic fractionation in the bacterial reduction of sulphate, Research, 4, 581-582.
Towe К. М., 1967. Wall stucture and cementation in Haplophragmoides canariensis, Contributions from the Cushman Foundation for Foraininiferal Research, Vol. XYIII, Part 4.
Towe К. М., Moench Т. Т., 1981. Electron-optical characterization of bacterial magnetite, Earth Planet. Sci. Lett., 52, 213 220.
Towe К. М., Rutzler K. (1968). Lepidocrocite iron mineralization in keratose sponge granules, Science, 162, 268-269.
Walcott C„ Gould J.L., Kirschvink J.L. (1979). Pigeons have magnets, Science, 205, 1027-1029.
Webb J., Macey D. C., 1983. Plasma ferritin in Polyplacophora and its possible role in the biomineralization of iron. In: Biomineralization and Biological Metal Accumulation (P. Westbroek and E. W. de Jong, eds.), Reidel Dordrecht, pp. 423 428.
Weiner S., Traub W. (1980). X-ray diffraction study of the insoluble organic matrix of mollusk shells, FEBS Lett., Ill, 312-316.
Weiner S., Traub W., 1981. Organic-matrix-mineral relationships in mollusk shell nacreous layers. In: Structural Aspects of Recognition and Assembly in Biological Macromolecules (M. Balaban, J.L. Sussman, W. Traub, and A. Yonath, eds.), Balaban ISS, Rehovot, pp. 467-482.
WeinerS., Traub W„ Lowenstam H. A., 1983. Organic matrix in calcified exoskeletons. In: Biomineralization and Biological Metal Accumulation (P. Westbroek and E. W. de Jong, eds.), Reidel, Dordrecht, pp. 205 224.
Woese C. R. (1981). Archaebacteria, Sci. Am., 244, 98-122.
Yariv J., Kalb A.J., Sperling R„ Bauminger E. R., Cohen S.G., OfferS. (1981). The composition and the structure of bacterial ferritin of Escherichia coli, Biochem. J., 197,
171.
Глава 2
ФЕРРИМАГНЕТИЗМ МАГНЕТИТА
Субир К. Банерджи, Брюс М. Московитц1
1. Введение
Самым распространенным материалом магнитных включений в биологических системах является магнетит Fe304, хотя встречаются и его разновидности: с недостатком катионов-маггемит (y-Fe203) и
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