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Baird RA, Desmadryl G, Fernández C, Goldberg JM (1988) The vestibular nerve of the chinchilla. II. Relation between afferent response properties and peripheral innervation patterns in the semicircular canals. J Neurophysiol 60:182-203 [PubMed]

References and models cited by this paper

References and models that cite this paper

Armand M, Minor LB (2001) Relationship between time- and frequency-domain analyses of angular head movements in the squirrel monkey. J Comput Neurosci 11:217-39 [PubMed]
Chimento TC, Doshay DG, Ross MD (1994) Compartmental modeling of rat macular primary afferents from three-dimensional reconstructions of transmission electron micrographs of serial sections. J Neurophysiol 71:1883-96 [Journal] [PubMed]
Hight AE, Kalluri R (2016) A biophysical model examining the role of low-voltage-activated potassium currents in shaping the responses of vestibular ganglion neurons. J Neurophysiol 116:503-21 [Journal] [PubMed]
Holmes WR, Huwe JA, Williams B, Rowe MH, Peterson EH (2017) Models of utricular bouton afferents: role of afferent-hair cell connectivity in determining spike train regularity. J Neurophysiol 117:1969-1986 [Journal] [PubMed]
   Role of afferent-hair cell connectivity in determining spike train regularity (Holmes et al 2017) [Model]
Ross MD, Linton SW, Parnas BR (2000) Simulation studies of vestibular macular afferent-discharge patterns using a new, quasi-3-D finite volume method. J Comput Neurosci 8:5-18 [PubMed]
(5 refs)