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Impact of mild traumatic brain injury on auditory brain stem dysfunction in mouse model.

Abstract
The auditory brainstem response (ABR) is an electrophysiological test that examines the functionality of the auditory nerve and brainstem. Traumatic brain injury (TBI) can be detected if prolonged peak latency is observed in ABR measurements, since latency measures the neural conduction time in the brainstem, and an increase in latency can be a sign of pathological lesion at the auditory brainstem level. The ABR is elicited by brief sounds that can be used to measure hearing sensitivity as well as temporal processing. Reduction in peak amplitudes and increases in latency are indicative of dysfunction in the auditory nerve and/or central auditory pathways. In this study we used sixteen young adult mice that were divided into two groups: sham and mild traumatic brain injury (mTBI), with ABR measurements obtained prior to, and at 2, 6, and 14 weeks after injury. Abnormal ABRs were observed for the nine TBI cases as early as two weeks after injury and the deficits lasted for fourteen weeks after injury. Results indicated a significant reduction in the Peak 1 (P1) and Peak 4 (P4) amplitudes to the first noise burst, as well as an increase in latency response for P1 and P4 following mTBI. These results are the first to demonstrate auditory sound processing deficits in a rodent model of mild TBI.
AuthorsReza M Amanipour, Robert D Frisina, Samantha A Cresoe, Teresa J Parsons, Xiaoxia Zhu, Cesario V Borlongan, Joseph P Walton
JournalAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference (Annu Int Conf IEEE Eng Med Biol Soc) Vol. 2016 Pg. 1854-1857 (Aug 2016) ISSN: 2694-0604 [Electronic] United States
PMID28268687 (Publication Type: Journal Article)
Topics
  • Animals
  • Auditory Pathways (physiopathology)
  • Auditory Threshold (physiology)
  • Brain Injuries, Traumatic (physiopathology)
  • Brain Stem (physiopathology)
  • Cochlear Nerve (physiology)
  • Disease Models, Animal
  • Evoked Potentials, Auditory, Brain Stem (physiology)
  • Female
  • Male
  • Mice
  • Noise
  • Reaction Time (physiology)
  • Recovery of Function (physiology)

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