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Updated: Jun 21, 2026

An Isolated Semi-intact Preparation of the Mouse Vestibular Sensory Epithelium for Electrophysiology and High-resolution Two-photon Microscopy
Published on: June 13, 2013
Cat efferent vestibular system: weak suppression of primary afferent activity
N Dieringer1, R H Blanks, W Precht
1Neurobiologische Abteilung, Max-Planck-Institut für Hirnforschung, Frankfurt, G.F.R.
Abstract:
Efferent vestibular neurons identified electrophysiologically in the brain stem do not receive a short latency synaptic input from the ipsilateral labyrinth. Central electric stimulation of these neurons influenced the resting discharge of only 8% of the primary afferent vestibular neurons. Caloric or electric stimulation of the vestibular input was ineffective in changing the spontaneous activity of contralateral primary afferent vestibular neurons.
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