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Journal Abstract Search


278 related items for PubMed ID: 19263165

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  • 5. Medial olivocochlear efferent reflex inhibition of human cochlear nerve responses.
    Lichtenhan JT, Wilson US, Hancock KE, Guinan JJ.
    Hear Res; 2016 Mar; 333():216-224. PubMed ID: 26364824
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  • 6. Simultaneous measurement of noise-activated middle-ear muscle reflex and stimulus frequency otoacoustic emissions.
    Goodman SS, Keefe DH.
    J Assoc Res Otolaryngol; 2006 Jun; 7(2):125-39. PubMed ID: 16568366
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  • 7. Influence of aging on medial olivocochlear system function.
    Lisowska G, Namyslowski G, Orecka B, Misiolek M.
    Clin Interv Aging; 2014 Jun; 9():901-14. PubMed ID: 24959071
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  • 8. Medial olivocochlear-induced transient-evoked otoacoustic emission amplitude shifts in individual subjects.
    Goodman SS, Mertes IB, Lewis JD, Weissbeck DK.
    J Assoc Res Otolaryngol; 2013 Dec; 14(6):829-42. PubMed ID: 23982894
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  • 13. Olivocochlear efferent vs. middle-ear contributions to the alteration of otoacoustic emissions by contralateral noise.
    Büki B, Wit HP, Avan P.
    Brain Res; 2000 Jan 03; 852(1):140-50. PubMed ID: 10661505
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  • 14. Effect of Contralateral Medial Olivocochlear Feedback on Perceptual Estimates of Cochlear Gain and Compression.
    Fletcher MD, Krumbholz K, de Boer J.
    J Assoc Res Otolaryngol; 2016 Dec 03; 17(6):559-575. PubMed ID: 27550069
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  • 19. Slow build-up of cochlear suppression during sustained contralateral noise: central modulation of olivocochlear efferents?
    Larsen E, Liberman MC.
    Hear Res; 2009 Oct 03; 256(1-2):1-10. PubMed ID: 19232534
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  • 20. Fast and slow effects of medial olivocochlear efferent activity in humans.
    Zhao W, Dhar S.
    PLoS One; 2011 Apr 08; 6(4):e18725. PubMed ID: 21494578
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