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PUBMED FOR HANDHELDS

Journal Abstract Search


151 related items for PubMed ID: 10462817

  • 1. Underwater temporary threshold shift induced by octave-band noise in three species of pinniped.
    Kastak D, Schusterman RJ, Southall BL, Reichmuth CJ.
    J Acoust Soc Am; 1999 Aug; 106(2):1142-8. PubMed ID: 10462817
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  • 2. Underwater temporary threshold shift in pinnipeds: effects of noise level and duration.
    Kastak D, Southall BL, Schusterman RJ, Kastak CR.
    J Acoust Soc Am; 2005 Nov; 118(5):3154-63. PubMed ID: 16334695
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  • 3. Onset, growth, and recovery of in-air temporary threshold shift in a California sea lion (Zalophus californianus).
    Kastak D, Reichmuth C, Holt MM, Mulsow J, Southall BL, Schusterman RJ.
    J Acoust Soc Am; 2007 Nov; 122(5):2916-24. PubMed ID: 18189581
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  • 4. Low-frequency amphibious hearing in pinnipeds: methods, measurements, noise, and ecology.
    Kastak D, Schusterman RJ.
    J Acoust Soc Am; 1998 Apr; 103(4):2216-28. PubMed ID: 9566340
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  • 7. Auditory masking in three pinnipeds: aerial critical ratios and direct critical bandwidth measurements.
    Southall BL, Schusterman RJ, Kastak D.
    J Acoust Soc Am; 2003 Sep; 114(3):1660-6. PubMed ID: 14514219
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  • 8. Long-term evidence of noise-induced permanent threshold shift in a harbor seal (Phoca vitulina).
    Reichmuth C, Sills JM, Mulsow J, Ghoul A.
    J Acoust Soc Am; 2019 Oct; 146(4):2552. PubMed ID: 31671984
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  • 9. The effect of a low-frequency sound source (acoustic thermometry of the ocean climate) on the diving behavior of juvenile northern elephant seals, Mirounga angustirostris.
    Costa DP, Crocker DE, Gedamke J, Webb PM, Houser DS, Blackwell SB, Waples D, Hayes SA, Le Boeuf BJ.
    J Acoust Soc Am; 2003 Feb; 113(2):1155-65. PubMed ID: 12597209
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  • 11. Comparative temporary threshold shifts in a harbor porpoise and harbor seal, and severe shift in a seal.
    Kastelein RA, Gransier R, Hoek L.
    J Acoust Soc Am; 2013 Jul; 134(1):13-6. PubMed ID: 23862780
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  • 14. Temporary hearing threshold shift in harbor seals (Phoca vitulina) due to a one-sixth-octave noise band centered at 16 kHz.
    Kastelein RA, Helder-Hoek L, Cornelisse S, Huijser LAE, Terhune JM.
    J Acoust Soc Am; 2019 Nov; 146(5):3113. PubMed ID: 31795703
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  • 15. Hearing threshold shifts and recovery after noise exposure in beluga whales, Delphinapterus leucas.
    Popov VV, Supin AY, Rozhnov VV, Nechaev DI, Sysuyeva EV, Klishin VO, Pletenko MG, Tarakanov MB.
    J Exp Biol; 2013 May 01; 216(Pt 9):1587-96. PubMed ID: 23596281
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  • 16. Temporary threshold shift following 24-hour noise exposure.
    Melnick W.
    Ann Otol Rhinol Laryngol; 1977 May 01; 86(6 Pt 1):821-6. PubMed ID: 596782
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  • 17. Effect of pile-driving sounds on harbor seal (Phoca vitulina) hearing.
    Kastelein RA, Helder-Hoek L, Kommeren A, Covi J, Gransier R.
    J Acoust Soc Am; 2018 Jun 01; 143(6):3583. PubMed ID: 29960448
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  • 18. Auditory detection of ultrasonic coded transmitters by seals and sea lions.
    Cunningham KA, Hayes SA, Michelle Wargo Rub A, Reichmuth C.
    J Acoust Soc Am; 2014 Apr 01; 135(4):1978-85. PubMed ID: 25234996
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  • 20. Temporary hearing threshold shift in harbor seals (Phoca vitulina) due to a one-sixth-octave noise band centered at 32 kHz.
    Kastelein RA, Helder-Hoek L, Cornelisse SA, Huijser LAE, Terhune JM.
    J Acoust Soc Am; 2020 Mar 01; 147(3):1885. PubMed ID: 32237866
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