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Synchrotron radiation as a tool in muscle physiology. In: Uses of synchrotron radiation in biology, S. 203 - 222. Academic Press, London [u.a.] (1982)
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The structure and assembly of simple viruses. In: Structural Molecular Biology, S. 475 - 505 (Hg. Davies, D. B.). Plenum, New York (1982)
143.
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Protein-RNA interactions during TMV assembly. In: Nucleic Acids and Proteins, S. 442 - 453 (Hg. Zhao−wen, S.). Sci. Press, Peking (1980)
144.
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Selbstorganisation biologischer Strukturen. In: Biomimetik als Chance: Ein neues therapeutisches Prinzip, S. 1 - 24 (Hg. Porcher, H.; Theurer, K.). Enke Verlag, Stuttgart (1980)
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Small-angle diffraction of X rays and the study of biological structures. In: Synchrotron Radiation Research, S. 533 - 564 (Hg. Winick, H.; Doniach, S.). Plenum Press, New York (1980)
146.
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The use of some novel X-ray diffraction techniques to study the effect of nucleotides on cross-bridges in insect flight muscle. In: Cross−Bridge Mechanism in Muscle Contraction, S. 407 - 423 (Hg. Sugi, H.; Pollack, G. H.). Univ. Press, Tokio (1979)
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The use of some novel X-ray Diffraction techniques to study the effect of nucleotides on cross-bridges in insert flight muscle. In: Cross-bridge mechanism in muscle contraction (Hg. Haruo, S.). Uinversity Park Press, Baltimore (1979)
148.
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The use of sychrotron radiation as a source for x-ray diffraction. In: Applied Fibre Science, Vol. 1, S. 219 - 237 (Hg. Happey, F.). Academic Press / Elsevier, Amsterdam (1978)
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Ein Vergleich der Forschungseinrichtungen in Großbritannien und in der Bundesrepublik Deutschland. In: Jahrbuch der Max−Planck−Gesellschaft, S. 113 - 130 (Hg. der e.V., M. z. F. W.). Max−Planck−Gesellschaft zur Förderung der Wissenschaften e.V., München (1973)
150.
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Molecular structure of the actomyosin system in cross-striated muscle. In: Molecular Bioenergetics and Macromolecular Biochemistry, S. 90 - 110 (Hg. Weber, H. H.). Springer, Heidelberg / Berlin (1972)
151.
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Molecular structure of the actomyosin system in cross-striated muscle. In: Molecular Bioenergetics and Macromolecular Biochemistry, S. 90 - 110 (1972)
152.
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The isomorphous replacement method. In: Computing Methods in Crystallography, S. 146 - 158 (Hg. Rollett, J. S.). Pergamon Pr., New York (1965)
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Chapter 3, S. 39 - 55 (Hg. Wolstenholme, G. E. W.; UK., E. C. P. M. J. W. S. L.,. C.). Elsevier [u.a.], Amsterdam [u.a.] (1957)
X-ray diffraction studies of the structure and morphology of tobacco mosaic virus. In: Ciba Foundation Symposium − The Nature of Viruses, Bd. Konferenzband (5)
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The interpretation of X-ray diffraction from glycerinated flight muscle fibre bundles: new theoretical and experimental approaches. Insect Flight Muscle: Proceedings of the Oxford Symposium April 1977, 1977-04. North−Holland, Oxford (1977), 12 S.
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X-ray diffraction in biology. Research Applications of Synchrotron Radiation, Proc. Study−Symp., 1973. Brookhaven Nat. Lab., Brookhaven (1973)
156.
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Structure studies on repolymerized TMV protein. Proc. Stockholm Symp. Structure of Biol. Molec., 1973. Stockholm Symp. Structure of Biol. Molec., Stockholm (1973)
157.
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The design requirements of vertebrate striated muscle. Principles of biomolecular organization, 1966. Churchill, London (1966)
158.
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The design requirements of vertebrate striated muscle. Principles of biomolecular organization, 1966. Churchill, London (1966), 15 S.
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A modified theory of image formation in an EFTEM. In: Electron microscopy: Proceedings of the 14th International Congress on Electron Microscopy, Bd. 160.
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Muscle contraction. In: The limits of reductionism in Biology, S. 76 - 92. Novartis Foundation Sympossium 213, 09. Januar 1998. Novatis Foundation, London (1998)