Mathematical simulation of correction of output signals from the gravitoinertial mechanoreceptor of a vestibular apparatus
Vestnik Moskovskogo universiteta. Matematika, mehanika, no. 5 (2013), pp. 54-59 Cet article a éte moissonné depuis la source Math-Net.Ru

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A modified simplified Hodgkin–Huxley mathematical model of activity of the primary afferent neuron of the vestibular system and an analysis of this model are presented.
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     title = {Mathematical simulation of correction of output signals from the gravitoinertial mechanoreceptor of a vestibular apparatus},
     journal = {Vestnik Moskovskogo universiteta. Matematika, mehanika},
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V. A. Sadovnichii; V. V. Aleksandrov; T. B. Alexandrova; A. A. Konik; V. B. Pakhomov; G. Yu. Sidorenko; E. Soto; K. V. Tikhonova; N. È. Shulenina. Mathematical simulation of correction of output signals from the gravitoinertial mechanoreceptor of a vestibular apparatus. Vestnik Moskovskogo universiteta. Matematika, mehanika, no. 5 (2013), pp. 54-59. http://geodesic.mathdoc.fr/item/VMUMM_2013_5_a10/

[1] Sadovnichii V.A., Aleksandrov V.V., Lemak S.S., Shkel A.M., O biomekhatronike, Mat-ly nauchnoi shkoly-konferentsii “Mobilnye roboty i mekhatronnye sistemy”, v. 1, Izd-vo MGU, M., 2005, 53–60

[2] Aleksandrov V.V., Voronin L.I., Glazkov Yu.N., Ishlinskii A.Yu., Sadovnichii V.A., Matematicheskie zadachi dinamicheskoi imitatsii aerokosmicheskikh poletov, Izd-vo MGU, M., 1995

[3] Aleksandrov V.V., Aleksandrova T.B., Migunov S.S., “Matematicheskaya model gravitoinertsialnogo mekhanoretseptora”, Vestn. Mosk. un-ta. Matem. Mekhan., 2006, no. 2, 59–64

[4] Tomilovskaya E.S., Berger M., Gerstenbrand F., Kozlovskaya I.B., “Effects of long-duration space flight on target acquisition”, Acta Astronautica, 68 (2011), 1454–1464 | DOI

[5] Tikhonova K.V., Korrektsiya stabilizatsii vzora v ekstremalnykh usloviyakh vizualnogo upravleniya dvizheniem, Magister. dis., M., 2011

[6] Sadovnichii V.A., Aleksandrov V.V., Aleksandrova T.B., Soto E., Sidorenko G.Yu., Tikhonova K.V., “Ob avtomaticheskoi korrektsii vestibulosensornogo konflikta v usloviyakh nevesomosti, osnovannoi na printsipe galvanicheskoi stimulyatsii i na kompyuternom modelirovanii”, Integral, 2012, no. 2, 70–74

[7] Orlov I.V., Gusev V.M., Dolgobrodov S.G., Schuplyakov V.S., “O vozmozhnosti korrektsii vertikalnoi pozitsii cheloveka s pomoschyu biologicheskoi obratnoi svyazi”, Sensornye sistemy, 17:1 (2003), 58–67

[8] Kim K.S., Minor L.B., Della Santina C.C., Lasker D.M., “Variation in response dynamics of regular and irregular vestibular-nerve afferents during sinusoidal head rotations and currents in the chinchilla”, Exp. Brain Res., 210:3–4 (2011), 643–649 | DOI

[9] Hodgkin A.L., Huxley A.F., “A quantitative description of membrane current and excitation in nerve”, J. Physiol., 117 (1952), 500–544 | DOI

[10] Aleksandrov V.V., Mikhaleva E.Yu., Soto E., Garsia-Tamaio R., “Modifikatsiya matematicheskoi modeli Khodzhkina–Khaksli pervichnogo neirona vestibulyarnogo apparata”, Vestn. Mosk. un-ta. Matem. Mekhan., 2006, no. 5, 65–68

[11] Simiu E., Chaotic Transitions in Deterministic and Stochastic Dynamical Systems, Princeton Univ. Press, Princeton, 2002 | MR

[12] Tuckwell H.C., Jost J., Analysis of Inverse Stochastic Resonance and the Long-Term Firing of Hodgkin–Huxley Neurons with Gaussian White Noise, Max Planck Inst., Leipzig, 2012