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Auditory-filter characteristics for listeners with real and simulated hearing impairment

机译:具有真实和模拟听力障碍的侦听器的听觉过滤器特性

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摘要

Functional simulation of sensorineural hearing impairment is an important research tool that can elucidate the nature of hearing impairments and suggest or eliminate compensatory signal-processing schemes. The objective of the current study was to evaluate the capability of an audibility-based functional simulation of hearing loss to reproduce the auditory-filter characteristics of listeners with sensorineural hearing loss. The hearing-loss simulation used either threshold-elevating noise alone or a combination of threshold-elevating noise and multiband expansion to reproduce the audibility-based characteristics of the loss (including detection thresholds, dynamic range, and loudness recruitment). The hearing losses of 10 listeners with bilateral, mild-to-severe hearing loss were simulated in 10 corresponding groups of 3 age-matched normal-hearing listeners. Frequency selectivity was measured using a notched-noise masking paradigm at five probe frequencies in the range of 250 to 4000 Hz with a fixed probe level of either 70 dB SPL or 8 dB SL (whichever was greater) and probe duration of 200 ms. The hearing-loss simulation reproduced the absolute thresholds of individual hearing-impaired listeners with an average root-mean-squared (RMS) difference of 2.2 dB and the notched-noise masked thresholds with an RMS difference of 5.6 dB. A rounded-exponential model of the notched-noise data was used to estimate equivalent rectangular bandwidths and slopes of the auditory filters. For some subjects and probe frequencies, the simulations were accurate in reproducing the auditory-filter characteristics of the hearing-impaired listeners. In other cases, however, the simulations underestimated the magnitude of the auditory bandwidths for the hearing-impaired listeners, which suggests the possibility of suprathreshold deficits.
机译:传感器听力障碍的功能模拟是一个重要的研究工具,可以阐明听力障碍的性质,并提出或消除补偿性信号处理方案。目前研究的目的是评估听力损失的基于可听性的功能模拟能力,以重现具有感应性听力损失的听众的听觉滤波器特性。听力损耗模拟使用单独的阈值升高噪声或阈值升高噪声和多频带扩展的组合来再现基于损失的可听性的特征(包括检测阈值,动态范围和响度招募)。 10个听众的听力损失有双边,轻度至严重的听力损失的10个相应的3年龄匹配的正常听觉听众。在250至4000Hz范围内的五个探针屏蔽范式的频率选择性测量频率选择性,其中70dB SPL或8 dB SL的固定探针水平(以较大者为准),探测持续时间为200毫秒。听力损失模拟以2.2dB的平均根平均平方(RMS)差和具有5.6dB的rms差异的平均根平均平方(RMS)差异的单个听力受损的侦听器的绝对阈值。用于估计检测滤波器的等效矩形带宽和斜坡的圆形指数模型。对于一些受试者和探测频率,模拟在再现听力受损听众的听觉过滤器特征方面是准确的。然而,在其他情况下,模拟低估了听力障碍听众的听觉带宽的大小,这表明了Suprathreshold缺陷的可能性。

著录项

  • 来源
    《Trends in amplification》 |2012年第1期|共21页
  • 作者单位

    Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 United States;

    Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 United States;

    Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 United States;

    Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 United States;

    Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 耳鼻咽喉科学;
  • 关键词

    auditory filter shape; hearing loss; hearing-loss simulation; notched-noise masking;

    机译:听觉滤波器形状;听力损失;听力损失模拟;缺口噪声掩蔽;
  • 入库时间 2022-08-20 08:17:07

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