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Scanning Microscopy|December 1, 1991
Correlation of cochlear pathology with auditory brainstem and cortical responses in cats with high frequency hearing lossR J Mount, R V Harrison, S G Stanton, et al.Audiology & Neuro-Otology|May 12, 1998
Optical imaging of intrinsic signals in chinchilla auditory cortexR V Harrison, N Harel, A Kakigi, et al.The Joint Commission Journal on Quality Improvement|December 22, 1999
Issues in the development, dissemination, and effect of an evidence-based guideline for managing sore throat in adultsS S Sonnad, R V Harrison, C J Standiford, et al.Auris, Nasus, Larynx|November 4, 1998
Comparison of distortion-product and transient evoked otoacoustic emissions with ABR threshold shift in chinchillas with ototoxic damageA Kakigi, H Hirakawa, N Harel, et al.Hearing Research|May 1, 1994
Cochlear function after selective inner hair cell degeneration induced by carboplatinS Takeno, R V Harrison, D Ibrahim, et al.The Journal of Otolaryngology|January 5, 2002
Effect of residual hearing prior to cochlear implantation on speech perception in childrenK A Gordon, K A Twitchell, B C Papsin, et al.Acta Oto-Laryngologica|March 28, 2008
Amplitude modulation of DPOAEs by acoustic stimulation of the contralateral earR V Harrison, A Sharma, T Brown, et al.Medical Care|December 1, 1983
The effects of burn severity and institutional differences on the costs of careJ R Wheeler, R V Harrison, R A Wolfe, et al.Neuroimage|March 22, 2000
Three distinct auditory areas of cortex (AI, AII, and AAF) defined by optical imaging of intrinsic signalsN Harel, N Mori, S Sawada, et al.Audiology & Neuro-Otology|September 10, 1998
Basal cochlear lesions result in increased amplitude of otoacoustic emissionsA Kakigi, H Hirakawa, N Harel, et al.Pageof 12