Functional Impairment of the Vestibular End Organ Resulting From Impulse Noise Exposure
- 1 June 2002
- journal article
- Published by Wiley in The Laryngoscope
- Vol. 112 (6) , 1110-1114
- https://doi.org/10.1097/00005537-200206000-00032
Abstract
Objectives/Hypothesis To assess the effect of exposure to impulse noise, known to cause damage to the cochlea, on the vestibular part of the inner ear using short latency vestibular evoked potentials (VsEPs), which is a direct and objective test for evaluating the function of the vestibular end organs.Study Design Prospective animal study.Methods Sand rats (Psammomys obesus) underwent baseline measurements of VsEPs in response to linear and angular acceleration stimuli and measurement of the auditory nerve and brainstem evoked response (ABR). The animals were then exposed to 10 gunshots generating impulse noise at an intensity of approximately 160 dB sound pressure level (SPL). Repeat measurements of the evoked potentials were conducted 2 to 4 hours, 1 week, and 6 weeks after the exposure. The amplitude and latency of the first wave of VsEPs in response to linear and angular acceleration stimuli, reflecting the function of the otolith organs and semicircular canals respectively, were compared between baseline and post‐exposure measurements, as were ABR thresholds.Results The amplitude of the first wave of the VsEPs in response to linear acceleration was significantly (P <.001) reduced and the latency significantly (P <.005) prolonged 2 to 4 hours after the exposure in comparison to baseline measurements. The latency prolongation persisted in follow‐up measurements, whereas the amplitude showed partial recovery. The first wave of VsEPs in response to angular acceleration was unchanged long‐term. ABR thresholds were elevated in the long‐term by 60 dB.Conclusion It seems that impulse noise not only damages the cochlea, but also causes clear functional impairment to the vestibular end organs, mainly the otolith organs.Keywords
This publication has 15 references indexed in Scilit:
- The effects of noise on the vestibular systemAmerican Journal of Otolaryngology, 2001
- Vestibular End‐Organ Impairment in an Animal Model of Type 2 Diabetes MellitusThe Laryngoscope, 2001
- Vestibular and Cochlear Ototoxicity of Topical Antiseptics Assessed by Evoked PotentialsThe Laryngoscope, 2000
- Superior canal dehiscence syndromeAmerican Journal of Otolaryngology, 2000
- Short latency compound action potentials from mammalian gravity receptor organsHearing Research, 1999
- Short latency vestibular evoked potentials (VsEPs) to linear acceleration impulses in ratsElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1997
- Short and middle latency vestibular evoked responses to acceleration in manElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1991
- The neural generators of the vestibular evoked responseBrain Research, 1987
- POSTURAL BODY SWAY AND EXPOSURE TO HIGH-ENERGY IMPULSE NOISEThe Lancet, 1987
- Recording of short latency vestibular evoked potentials to acceleration in rats by means of skin electrodesElectroencephalography and Clinical Neurophysiology, 1982