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首页> 外文期刊>The Journal of the Acoustical Society of America >Conditioned attenuation of auditory brainstem responses in dolphins warned of an intense noise exposure: Temporal and spectral patterns
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Conditioned attenuation of auditory brainstem responses in dolphins warned of an intense noise exposure: Temporal and spectral patterns

机译:在海豚中检测到激烈的噪声暴露:时间和光谱模式的条件衰减

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摘要

Conditioned reductions in hearing sensitivity were elicited in two bottlenose dolphins by pairing a 10-kHz tone (the conditioned stimulus) with a more intense tone (the unconditioned stimulus) at 20, 40, or 80 kHz. Hearing was assessed via noninvasive measurement of auditory brainstem responses (ABRs) to 20- to 133-kHz tone bursts presented at randomized intervals from 1 to 3 ms. ABRs within each trial were obtained by averaging the instantaneous electroencephalogram, time-locked to tone burst onsets, over 2- to 3-s time intervals. In initial testing, ABR amplitudes were reduced (relative to baseline values) in one dolphin after the conditioned stimulus, but before the unconditioned stimulus, demonstrating conditioned hearing attenuation. In subsequent testing with both dolphins, ABRs were attenuated throughout the entire 31-s trial. Maximum ABR threshold shifts occurred at and above the unconditioned stimulus frequency and were above 40 dB for some conditions. The results (1) confirm that dolphins can be conditioned to reduce hearing sensitivity when warned of an impending noise exposure, (2) show that hearing attenuation occurs within the cochlea or auditory nerve, and (3) support the hypothesis that toothed whales can "self-mitigate" some effects of noise if warned of an impending exposure.
机译:通过将10-kHz音调(条件刺激)与20,40或80kHz的更强烈的色调(无条件刺激)配对10kHz音调(条件刺激),在两个瓶颈海豚中引发了听力敏感性的调理减少。通过非侵入性脑干响应(ABR)至20至133 kHz的调度评估听证会以1至3 ms的随机间隔呈现。通过平均瞬时脑电图获得每次试验中的ABR,以超过2至3秒的时间间隔锁定到音调突发持续靴。在初始测试中,在条件刺激之后,在一个海豚之后,在一个海豚中,但在无条件的刺激之前,在无条件的刺激之前,证明条件听力衰减的初始化振荡减少了(相对于基线值)。在随后的两只海豚测试中,ABL在整个31秒试验中衰减。在无条件的刺激频率和高于无条件的刺激频率上发生最大ABR阈值偏移,并且在某些条件下高于40 dB。结果(1)确认在警告即将发生的噪声暴露时可以将海豚降低,以减少听力敏感性,(2)表明听力衰减发生在耳蜗或听觉神经内,并且(3)支持齿鲸可以“自我缓解“如果警告即将曝光,则一些噪声影响。

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