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首页> 外文期刊>The Journal of the Acoustical Society of America >Level-dependent changes in detection of temporal gaps in noise markers by adults with normal and impaired hearing
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Level-dependent changes in detection of temporal gaps in noise markers by adults with normal and impaired hearing

机译:听力正常和受损的成年人在噪声标记的时间间隙检测中依赖水平的变化

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摘要

Compression in the basilar-membrane input-output response flattens the temporal envelope of a fluctuating signal when more gain is applied to lower level than higher level temporal components. As a result, level-dependent changes in gap detection for signals with different depths of envelope fluctuation and for subjects with normal and impaired hearing may reveal effects of compression. To test these assumptions, gap detection with and without a broadband noise was measured with 1 000-Hz-wide (flatter) and 50-Hz-wide (fluctuating) noise markers as a function of marker level. As marker level increased, background level also increased, maintaining a fixed acoustic signal-to-noise ratio (SNR) to minimize sensation-level effects on gap detection. Significant level-dependent changes in gap detection were observed, consistent with effects of cochlear compression. For the flatter marker, gap detection that declines with increases in level up to mid levels and improves with further increases in level may be explained by an effective flattening of the temporal envelope at mid levels, where compression effects are expected to be strongest. A flatter effective temporal envelope corresponds to a reduced effective SNR. The effects of a reduction in compression (resulting in larger effective SNRs) may contribute to better-than-normal gap detection observed for some hearing-impaired listeners.
机译:当向较高级别的时间分量施加更多的增益到较低级别时,基底膜输入-输出响应中的压缩会使波动信号的时间包络变平。结果,对于具有不同包络波动深度的信号以及听力正常和受损的受试者,间隙检测中与水平相关的变化可能会显示出压缩效应。为了检验这些假设,在有和没有宽带噪声的情况下,使用1000 Hz宽(平坦)和50 Hz宽(波动)噪声标记作为标记电平的函数来测量间隙检测。随着标记水平的增加,背景水平也增加,保持固定的声学信噪比(SNR),以最小化对间隙检测的感觉水平影响。在间隙检测中观察到显着的水平依赖性变化,这与耳蜗压缩的作用一致。对于较平坦的标记,间隙检测随着水平的增加而下降到中间水平,并随着水平的进一步增加而改善,这可以通过在中间水平有效压缩时间包络来解释,其中压缩效果预计最强。有效的时间包络线越平坦,对应的有效SNR越低。压缩减少的效果(导致更大的有效SNR)可能有助于对某些听力受损的听众观察到比正常情况更好的间隙检测。

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