The simulation of ciliary apparatus of ciliated epithelium cells
Matematičeskoe modelirovanie, Tome 21 (2009) no. 2, pp. 60-72.

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The mechanism of ciliary apparatus of ciliated cells and mucic caul of nose and also their functionality are described. The model of ciliary apparatus as solid bodies system is proposed. The mathematical description of such model and data of computer simulation are reduced.
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D. S. Alexseev; E. I. Badu; A. E. Gorodetsky; V. V. Dubarenko; A. Y. Kuchmin; I. L. Tarasova. The simulation of ciliary apparatus of ciliated epithelium cells. Matematičeskoe modelirovanie, Tome 21 (2009) no. 2, pp. 60-72. http://geodesic.mathdoc.fr/item/MM_2009_21_2_a5/

[1] Pluzhnikov M. S., Konservativnye i khirurgicheskie metody v rinologii, Izd. “Dialog”, SPb., 2005

[2] Borisenko V. E., “Nanoelektronika – osnova informatsionnykh sistem XXI veka”, Sorosovskii obrazovatelnyi zhurnal, 5 (1997), 100–104

[3] Gorodetskii A. E., Tarasova I. L., Artemenko Yu. N., Kozlov V. V., Vychisleniya v sistemakh upravleniya, Izd-vo Politekhn. un-ta, SPb., 2006, 480 pp.

[4] Karsenti E., Maro B., “Centrosomes and the spatial distribution of microtubules in animal cells”, Trends Biochem Sci., 11 (1986), 460–463 | DOI

[5] Dustin P., Microtubules, 2-nd., Springer-Verlag, New York, 1984, 127–164

[6] Piskunov S. Z., “Aktualnye problemy rinologii i puti ikh resheniya”, Rossiiskaya rinologiya, 1995, no. 3–4, 6–12

[7] Pluzhnikov M. S. i dr., Slizistaya obolochka nosa. Mekhanizmy gomeostaza i gomokineza, SPb., 1995, 6–12

[8] Irring M., “Muscle mechanics and probes of the crossbridge cycle”, Fibrous protein Structure, eds. J. M. Squire, P. J. Vibert, Academic press, San Diego, CA, 1987

[9] Brokaw C. J., “Future directions for studies of mechanisms for generating flagellar bending waves”, J. Cell Sci., Suppl. 4 (1986), 103–113

[10] Amos L. A., Baker T. S., “The thee dimensional structure of tubulin protofilaments”, Nature, 279 (1979), 607–612 | DOI

[11] Linck R. W., Amos W. B., “Localization of tektin filaments in microtubules of sea urchin sperm flagella by immunoelectron microscopy”, J. Cell Biol., 100 (1985), 126–135 | DOI

[12] Goodenough U. W., Heuser J. E., “Substructure of inner dynein arms, radial spokes and the central pair/projection complex of cilia and flagella”, J. Cell Biol., 100 (1985), 2008–2018 | DOI

[13] Johnson K. A., “Pathway of the microtubule-dynein ATPase and structure of dynein: a comparison with actomyosin”, Annu. Rev. Biophys. Biophys. Chem., 14 (1985), 161–188 | DOI

[14] Cooke R., “The mechanism of muscle contraction”, CRC Crit. Rev. Biochem., 21 (1986), 53–118 | DOI

[15] Gusev N. B., “Molekulyarnye mekhanizmy myshechnogo sokrascheniya”, Sorosovskii obrazovatelnyi zhurnal, 6:8 (2000), 24–32 | MR

[16] Gavrilov S. V., Konoplev V. A., Kompyuternye tekhnologii issledovaniya mnogozvennykh mekhatronnykh sistem, Nauka, SPb., 2004, 191 pp. | Zbl

[17] Lure A. I., Analiticheskaya mekhanika, Fizmatgiz, M., 1961, 846 pp. | MR

[18] Warrick H. M., Spudich J. A., “Myosin structure and function in cell motility”, Annu. Rev. Cell Biol., 3 (1987), 379–421 | DOI