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Journal of Basic and Clinical Physiology and Pharmacology|November 1, 2007
The cochlear microphonic potential does not reflect the passive basilar membrane traveling waveR Perez, S Freeman, J Y Sichel, et al.
The Laryngoscope|September 13, 2000
Vestibular and cochlear ototoxicity of topical antiseptics assessed by evoked potentialsR Perez, S Freeman, H Sohmer, et al.
The Laryngoscope|February 24, 2001
Vestibular end-organ impairment in an animal model of type 2 diabetes mellitusR Perez, E Ziv, S Freeman, et al.
Audiology & Neuro-Otology|July 28, 2001
The pathway enabling external sounds to reach and excite the fetal inner earH Sohmer, R Perez, J Y Sichel, et al.
Hearing Research|July 29, 2000
Bone conduction experiments in animals - evidence for a non-osseous mechanismS Freeman, J Y Sichel, H Sohmer
Journal of Basic and Clinical Physiology and Pharmacology|October 21, 2000
Use of evoked potentials to objectively differentiate between selective vulnerability of cochlear and vestibular end organ functionS Freeman, R Priner, M Mager, et al.
Audiology & Neuro-Otology|March 14, 2003
The neonate has a temporary conductive hearing loss due to fluid in the middle earR Priner, S Freeman, R Perez, et al.
Journal of Basic and Clinical Physiology and Pharmacology|October 19, 2001
The pathway for the transmission of external sounds into the fetal inner earH Sohmer, S Freeman
Hearing Research|September 1, 1991
Hypoxia induced hearing loss in animal models of the fetus in-uteroH Sohmer, S Freeman
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