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[1] Sadovnichii V.A., Aleksandrov V.V., Aleksandrova T.B., Vega R., Soto E., “Informatsionnyi protsess v lateralnykh polukruzhnykh kanalakh”, Dokl. RAN, 436:1 (2011), 129–132 | Zbl
[2] Sadovnichii V.A., Aleksandrov V.V., Alexandrova T.B., Konik A.A., Pakhomov B.V., Sidorenko G.Yu., Soto E., Tikhonova K.V., Shulenina N.E., “Mathematical simulation of correction of output signals from the gravitoinertial mechanoreceptor of vestibular apparatus”, Moscow Univ. Mech. Bull., 68:5 (2013), 111–116 | DOI | MR | Zbl
[3] Hodgkin A.L., Huxley A.F., “A quantitative description of membrane current and its application to conduction and excitation in nerve”, J. Physiol., 117 (1952), 500–544 | DOI
[4] Limón A., Pérez C., Vega R., Soto E., “Ca2+-activated K+-current density is correlated with soma size in rat vestibular-afferent neurons in culture”, J. Neurophysiol., 94:6 (2005), 3751–3761 | DOI
[5] Aleksandrov V.V., Mikhaleva E.Yu., Soto E., Garcia Tamayo R., “A modification of the Hodgkin–Huxley model for primary neurons of the vestibular apparatus”, Moscow Univ. Mech. Bull., 61:5 (2006), 21–24 | Zbl
[6] Goldwyn J.H., Shea-Brown E., “The what and where of adding channel noise to the Hodjkin–Huxley equations”, PLOS Comput. Biol., 7 (2011), e1002247, 9 pp. | DOI | MR
[7] Ospeck M., “Auditory nerve spike generator modeled as a variable attenuator based on saddle node on invariant circle bifurcation”, PLOS ONE, 7:9 (2012), e45326, 7 pp. | DOI
[8] Stolbkov Yu.K., Tomilovskaya E.S., Kozlovskaya I.B., Gerasimenko Yu.P., “Galvanicheskaya vestibulyarnaya stimulyatsiya v fiziologicheskikh i klinicheskikh issledovaniyakh poslednikh let”, Uspekhi fiziol. nauk, 45:2 (2014), 57–76
[9] Moore S.T., Dilda V., MacDougall H.G., “Galvanic vestibular stimulation as an analogue of spatial disorientation after spaceflight”, Aviat. Space and Environ. Med., 82 (2011), 535–542 | DOI