Characterization of vestibular potentials evoked by linear acceleration pulses in the chinchilla

Böhmer, A.; Hoffman, L.F.; Honrubia, V.

American Journal of Otology 16(4): 498-504

1995


ISSN/ISBN: 0192-9763
PMID: 8588651
Document Number: 453898
The objective of this study was to improve vestibular evoked potentials as a qualitative parameter for vestibular function in small laboratory animals. Linear upward acceleration pulses (up to 8 g within 1 ms) were applied to the head of anesthetized chinchillas. Electrophysiologic responses recorded by a chronically implanted electrode within the facial nerve canal consisted of an initial negative potential, labeled N-1, within the first millisecond following the onset of acceleration. This potential was followed by a series of positive and negative potentials found to be highly labile to acoustic masking. The initial negative potential was only minimally sensitive to acoustic masking and persisted following surgical cochlear ablation, but completely disappeared following administration of potassium chloride into the inner ear. Recorded from the contralateral ear, N-1 was unaffected by these procedures. Amplitudes of N-1 decreased with attenuating stimulus intensity (1.45 mu-V/dB), whereby N-1 latencies slightly increased (-0.015 ms/dB). These data, when coupled with the ability to completely abolish N-1 with potassium intoxication while the contralateral ear remained intact, indicate that this potential represents electrophysiologic activity resulting from activation of the ipsilateral vestibular labyrinth.

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