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1 as affected by electrical stimulation of the vestibular nerve.
2 y electrical current pulses delivered to the vestibular nerve.
3 esencephalic tract, quintofrontal tract, and vestibular nerve.
4 t type II hair cells to the primary afferent vestibular nerve.
5 es elicited by electrical stimulation of the vestibular nerve.
6 idocaine (1-2 microL of 0.5%) into the right vestibular nerve.
7            Behaviorally relevant patterns of vestibular nerve activation generated a rapid and substa
8 first time plasticity at the synapse between vestibular nerve afferents and their postsynaptic target
9 icated that the three descriptive classes of vestibular nerve afferents have unique as well as overla
10  characterized horizontal semicircular canal vestibular nerve afferents in the toadfish, Opsanus tau.
11 ns in individual response characteristics of vestibular nerve afferents to rotational stimulus provid
12 r reflexes elicited by superior laryngeal or vestibular nerve afferents.
13 anisms of efferent actions, we recorded from vestibular-nerve afferents close to the turtle posterior
14              Many fibers were labeled in the vestibular nerve and in fascicles of the descending vest
15 en in the lagena macula and the cochlear and vestibular nerves by stage 30.
16 was observed in gerbils after lesions of the vestibular nerve central to the ganglion, the cerebellum
17  test this, we electrically stimulated human vestibular nerves during a goal-directed voluntary tilt
18 cessing stages, the otolith afferents of the vestibular nerve encode linear motion.
19 inner ear in the regions of the auditory and vestibular nerve fibres, the neural and abneural limbs a
20 portionally increase or decrease the rate of vestibular nerve firing, as if the head were rotating fa
21 nerated by the electrical stimulation of the vestibular nerve in seven frogs, and we performed a prin
22 ed to arise from differences in the types of vestibular nerve inputs to vestibular nucleus neurons.
23                          After lesion of the vestibular nerve, no calretinin staining was seen in any
24               We electrically stimulated the vestibular nerves of human subjects to evoke a virtual h
25                                          The vestibular nerve projects to the four nuclei of the vest
26  of calretinin staining resembled that after vestibular nerve section alone, whereas calbindin staini
27 t pulses and their postsynaptic responses to vestibular nerve stimulation were recorded, while simult
28     Eighteen consecutive patients undergoing vestibular nerve surgery underwent pre- and postoperativ
29 icity at a candidate site of motor learning: vestibular nerve synapses onto neurons that mediate refl
30        Bidirectional, linear gain control of vestibular nerve synapses onto projection neurons provid
31 logical refinements are required for central vestibular nerve synapses to linearly transmit rate-code
32 ced by sectioning individual branches of the vestibular nerve that innervate the different receptor o
33 fter a combined lesion of the cerebellum and vestibular nerve, the distribution and density of calret
34                Electrical stimulation of the vestibular nerve using short trains of current pulses ev

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