What distinguishes a living structure from a lifeless structure?
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  • 作者:A. A. Vazina (1)

    1. Institute of Theoretical and Experimental Biophysics
    ; Russian Academy of Sciences ; Pushchino ; 142290 ; Russia
  • 刊名:Bulletin of the Russian Academy of Sciences: Physics
  • 出版年:2015
  • 出版时间:January 2015
  • 年:2015
  • 卷:79
  • 期:1
  • 页码:81-88
  • 全文大小:2,268 KB
  • 参考文献:1. Rosenbaum, G., Holmes, K.C., and Witz, J., / Nature, 1971, vol. 230, pp. 434鈥?37. CrossRef
    2. Mokul鈥檚kaya, T.D., Mokul鈥檚kii, N.A., Nikitin, A.A., et al., / Dokl. Akad. Nauk SSSR, 1974, vol. 218, p. 824.
    3. Vazina, A.A., Gerasimov, V.S., Zheleznaya, L.A., et al., / Biofizika, 1975, vol. 20, no. 5, pp. 801鈥?06.
    4. Vazina, A.A., Gerasimov, V.S., Zheleznaya, L.A., et al., / Apparat. Metody Rentgen. Anal., 1977, no. 19, pp. 73鈥?1.
    5. Gimanov, V.P., Goganov, D.A., Kos鈥檡ankov, A.P., et al., / Biofizika, 1978, vol. 23, no. 2, pp. 393鈥?98.
    6. Lemazhikhin, B.K. and Lebedev, L.A., / Prib. Tekhn. Eksperim., 1960, no. 1, p. 136.
    7. Vazina, A.A., Lemazhikhin, B.K., and Frank, G.M., / Dokl. Akad. Nauk SSSR, 1964, vol. 159, no. 4, pp. 921鈥?24.
    8. Vazina. A.A., Lemazhikhin, B.K., and Frank, G.M., / Biofizika, 1964, vol. 9, no. 2, p. 237.
    9. Frank, G. and Lemazhikhin, B., / J. Mol. Biol., 1965, vol. 14, pp. 373鈥?80. CrossRef
    10. Yurchenko, S.N., Vazina, A.A., Lemazhikhin, B.K., and Krasan, Yu.P., / Biokhimiya, 1966, vol. 31, pp. 191鈥?93.
    11. Vazina, A.A., Zeleznaja, L.A., Lemazikhin, B.K., and Frank, G.M., / Acta Crystallogr. A, 1966, vol. 21, pp. 166鈥?67.
    12. Vazina, A.A., / Nucl. Instrum. Methods A, 1987, vol. 261, pp. 200鈥?08. CrossRef
    13. Huxley, H.E. and Brown, W., / J. Mol. Biol., 1967, vol. 30, p. 383. CrossRef
    14. Vazina, A.A., / Zh. Vsesoyuzn. Khim. Obsch., 1983, vol. 28, no. 2, pp. 84鈥?9.
    15. Vazina, A.A., / Vestn. Akad. Nauk SSSR, 1978, no. 8, pp. 14鈥?3.
    16. Vazina, A.A., Vol鈥檏enshtein, M.V., Gadzhiev, A.M., et al., / Dokl. Akad. Nauk SSSR, 1984, vol. 284, no. 4, pp. 941鈥?45.
    17. Huxley, H.E., et al., / Proc. Nat. Acad. Sci. USA, 1981, vol. 78, p. 2297. CrossRef
    18. Soteriou, A., Trinick, J., Vazina, A., et al., / Proc. Int. Symp. 鈥淏iological Motility鈥?/em>, Pushchino, 1994, pp. 51鈥?4.
    19. Vazina, A., Gorbunova, N., Lanina, N., et al., / Nucl. Instrum. Methods A, 2005, vol. 543, pp. 148鈥?52. CrossRef
    20. Vazina, A., Lanina, N., Bras, W., et al., / J. Muscle Res. Cell Motility, 2006, vol. 27, nos. 5鈥?, p. 486.
    21. Vazina, A., Lanina, N., Alexeev, D., et al., / J. Struct. Biol., 2006, vol. 155, pp. 251鈥?62. CrossRef
    22. Gerasimov, V.S., Korneev, V.N., Kulipanov, G.N., et al., / Nucl. Instrum. Methods A, 1998, vol. 405, pp. 525鈥?31. CrossRef
    23. Ancharov, A.I., Vazina, A.A., Kondrat鈥檈v, V.I., et al., / Poverkhn. Rentgen., Sinkhrotron. Neitron. Issl., 2005, no. 9, pp. 44鈥?8.
    24. Manushkin, A., Maevsky, E., Shelestov, V., et al., / Proc. 4th Int. Conf. 鈥淪cience and Business鈥? NANOBIO and Related New and Perspective Biotechnologies, Pushchino, 2007, pp. 107鈥?11.
    25. Shil鈥檚htein, S.Sh., Somenkov, V.A., Manushkin, A.A., et al., / Poverkhn. Rentgen., Sinkhrotron. Neitron. Issl., 1997, no 12, pp. 45鈥?6.
    26. Manushkin, A.A., Khodeev, A.I., Shil鈥檚htein, S.Sh., et al., / Vestn. Rentgenol. Radiol. Med., 1998, no. 2, pp. 32鈥?7.
    27. Kohn, V., Rau, C., Sergienko, P.M., et al., / Nucl. Instrum. Methods A, 2005, vol. 543, pp. 306鈥?11. CrossRef
    28. Aul鈥檆henko, V.M., Vazina, A.A., Galimov, P.V., et al., / Nucl. Instrum. Methods A, 2005, vol. 543, pp. 158鈥?60. CrossRef
    29. Snigirev, A., Snigireva, I., Kohn, V., et al., / Rev. Sci. Instrum., 1995, vol. 66, no. 12, pp. 5486鈥?492. CrossRef
    30. Orengo, C.A., Jones, D.T., and Thornton, J.M., / Nature, 1994, vol. 372, pp. 631鈥?34. CrossRef
    31. Samoilovich, M.I. and Talis, A.L., / Materialy XVIII Mezhdunarodnoi nauchno-tekhnicheskoi konferentsii 鈥淰ysokie tekhnologii v promyshlennosti Rossii鈥?/em> (Proc. 18th Int. Sci.-Tech. Conf. 鈥淗igh Technologies in the Russian Industry鈥?, Moscow, 2012, pp. 394鈥?24.
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Physics
    Nuclear Physics, Heavy Ions and Hadrons
    Russian Library of Science
  • 出版者:Allerton Press, Inc. distributed exclusively by Springer Science+Business Media LLC
  • ISSN:1934-9432
文摘
The molecular and nanostructural dynamics of the three fibrillar systems of a muscle during its contraction is studied by means of high-time resolution X-ray diffraction using synchrotron radiation. The results from X-ray diffraction research are analyzed within the modern mathematical concept of the local structural order of nanoobjects. Questions of the structure and function of biological nanosystems are associated with the geometry of the physical space in which these objects are formed and exist. The organization of biological structures differs from the crystal-type ordering in three-dimensional Euclidean space by transition from invariance relative to the infinite translational lattice of lifeless structures to the local nanostructural ordering of live systems which is defined by invariance relative to the constructions of algebraic geometry.

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