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Contralateral efferent suppression of human hearing sensitivity

机译:对侧传出抑制人类听觉敏感性

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摘要

The present study aimed at characterizing the suppressing effect of contralateral medial olivocochlear (MOC) efferents on human auditory sensitivity and mechanical cochlear responses at sound levels near behavioral thresholds. Absolute thresholds for pure tones of 500 and 4000 Hz with durations between 10–500 ms were measured in the presence and in the absence of a contralateral broadband noise. The intensity of the noise was fixed at 60 dB SPL to evoke the contralateral MOC reflex without evoking the middle-ear muscle reflex. In agreement with previously reported findings, thresholds measured without the contralateral noise decreased with increasing tone duration, and the rate of decrease was faster at 500 than at 4000 Hz. Contralateral stimulation increased thresholds by 1.07 and 1.72 dB at 500 and 4000 Hz, respectively. The mean increase (1.4 dB) just missed statistical significance (p = 0.08). Importantly, the across-frequency mean threshold increase was significantly greater for long than for short probes. This effect was more obvious at 4000 Hz than at 500 Hz. Assuming that thresholds depend on the MOC-dependent cochlear mechanical response followed by an MOC-independent, post-mechanical detection mechanism, the present results at 4000 Hz suggest that MOC efferent activation suppresses cochlear mechanical responses more at lower than at higher intensities across the range of intensities near threshold, while the results at 500 Hz suggest comparable mechanical suppression across the threshold intensity range. The results are discussed in the context of central masking and of auditory models of efferent suppression of cochlear mechanical responses.
机译:本研究旨在表征对侧内侧耳蜗(MOC)传出物在接近行为阈值的声音水平下对人类听觉敏感性和机械耳蜗反应的抑制作用。在有和没有对侧宽带噪声的情况下,测量持续时间在10–500 ms之间的500和4000 Hz纯音的绝对阈值。噪声强度固定为60 dB SPL,以引起对侧MOC反射,而不会引起中耳肌肉反射。与先前报道的发现一致,没有对侧噪声的情况下测量的阈值随音调持续时间的增加而降低,并且在500 Hz时的降低速度快于在4000 Hz时的降低速度。对侧刺激分别在500和4000 Hz下将阈值提高了1.07和1.72 dB。平均增加值(1.4 dB)只是没有统计学意义(p = 0.08)。重要的是,长探头的跨频平均阈值增加明显大于短探头。 4000 Hz时的效果比500 Hz时更明显。假设阈值取决于依赖于MOC的人工耳蜗机械反应,然后依赖于依赖于MOC的机械后检测机制,那么在4000 Hz时的当前结果表明,在整个范围内,MOC传出的激活抑制耳蜗机械反应的程度均低于较低的强度。强度接近阈值,而在500 Hz时的结果表明在整个阈值强度范围内,机械抑制作用相当。在中央掩蔽和耳蜗机械反应传出抑制的听觉模型的背景下讨论了结果。

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