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Original Article

Contralateral auditory stimulation and otoacoustic emissions: a review of basic data in humans

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Pages 213-218 | Received 24 Oct 1994, Accepted 09 Nov 1994, Published online: 12 Oct 2009

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Massimo Ralli, Arianna di Stadio, Antonio Greco, Giancarlo Altissimi, Filippo Mazzei, Rosaria Turchetta, Marco de Vincentiis & Giancarlo Cianfrone. (2017) Development of progressive hearing loss and tinnitus in a patient with myasthenia gravis: an overlooked comorbidity?. Hearing, Balance and Communication 15:4, pages 260-266.
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Louisa Murdin & Rosalyn Davies. (2008) Otoacoustic emission suppression testing: A clinician's window onto the auditory efferent pathway. Audiological Medicine 6:4, pages 238-248.
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Grazyna Lisowska, Jacek Smurzynski, Krzysztof Morawski, Grzegorz Namyslowski & Rudolf Probst. (2002) Influence of Contralateral Stimulation by Two-tone Complexes, Narrow-band and Broad-band Noise Signals on the 2f 1 -f 2 Distortion Product Otoacoustic Emission Levels in Humans. Acta Oto-Laryngologica 122:6, pages 613-619.
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E. Seifert, K. Brand, K. van de Flierdt, M. Hahn, M. Riebandt & A. Lamprecht-Dinnesen. (2001) The influence of hypothermia on outer hair cells of the cochlea and its efferents. British Journal of Audiology 35:1, pages 87-98.
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Articles from other publishers (13)

Kavassery Venkateswaran Nisha, Muthu Karthick Loganathan & Prashanth Prabhu. (2022) Gender differences in contralateral suppression of spontaneous otoacoustic emissions in individuals with auditory neuropathy spectrum disorders. European Archives of Oto-Rhino-Laryngology 280:3, pages 1493-1499.
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Daniel H. Lee & Justin M. Aronoff. (2018) Changing stimulation patterns can change the broadness of contralateral masking functions for bilateral cochlear implant users. Hearing Research 363, pages 55-61.
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Enrique A. Lopez-Poveda. (2018) Olivocochlear Efferents in Animals and Humans: From Anatomy to Clinical Relevance. Frontiers in Neurology 9.
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Wafaa A. Kaf & Ali A. Danesh. (2013) Distortion-product otoacoustic emissions and contralateral suppression findings in children with Asperger's Syndrome. International Journal of Pediatric Otorhinolaryngology 77:6, pages 947-954.
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U. Ajith Kumar, Raksha Methi & M. C. Avinash. (2012) Test/retest repeatability of effect contralateral acoustic stimulation on the magnitudes of distortion product ototacoustic emissions. The Laryngoscope 123:2, pages 463-471.
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Grażyna Lisowska, Grzegorz Namysłowski, Maciej Misiołek, Wojciech Ścierski, Bogusława Orecka, Eugeniusz Czecior & Anna Dziendziel. (2008) Test eferentny ślimaka – czułość i swoistość metody. Otolaryngologia Polska 62:6, pages 747-754.
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Corinna NölleIngo Todt, Rainer O. Seidl & Arne Ernst. (2004) Pathophysiological Changes of the Central Auditory Pathway after Blunt Trauma of the Head. Journal of Neurotrauma 21:3, pages 251-258.
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Ben Lineton & Mark E. Lutman. (2003) The effect of suppression on the periodicity of stimulus frequency otoacoustic emissions: Experimental data. The Journal of the Acoustical Society of America 114:2, pages 871-882.
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Stefano Di Girolamo, Aurelio d’Ecclesia, Nicola Quaranta, Aldo Garozzo, Amelia Evoli & Gaetano Paludetti. (2001) Effects of contralateral white noise stimulation on distortion product otoacoustic emissions in myasthenic patients. Hearing Research 162:1-2, pages 80-84.
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D. Purcell, H. Kunov & W. Cleghorn. (1999) Objective Calibration of Bone Conductors Using Otoacoustic Emissions. Ear and Hearing 20:5, pages 375-392.
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Kristy Rhoades, Bradley McPherson, Veronica Smyth, Joseph Kei & Anthony Baglioni. (1998) Effects of Background Noise on Click-Evoked Otoacoustic Emissions. Ear and Hearing 19:6, pages 450-462.
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D. Purcell, H. Kunov, P. Madsen & W. Cleghorn. (1998) Distortion Product Otoacoustic Emissions Stimulated Through Bone Conduction. Ear and Hearing 19:5, pages 362-370.
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Andrés Silva & Antonio Ysunza. (1998) Effect of contralateral masking on the latency of otoacoustic emissions elicited by acoustic distortion products. International Journal of Pediatric Otorhinolaryngology 44:2, pages 125-132.
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