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Objective estimation of loudness growth using tone burst evoked auditory responses.

机译:使用音调诱发听觉反应的响度增长的客观估计。

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摘要

Human perception of loudness as function of a wide range of stimulus intensity is hypothesized to vary in complex ways that cannot be accounted for simply by the listener's threshold and discomfort level. The ability to estimate loudness growth as function of stimulus intensity using an objective procedure could potentially allow for customized non-linear hearing aid fitting for patients unable to perform standard subjective auditory tests. Some researchers have investigated the feasibility of using evoked auditory brainstem responses (ABR) and otoacoustic emissions (OAE) as physiological predictors of loudness growth in humans. Results from OAE studies were promising, but lacked an investigation into the selection of its parameters and a measure of the methodological performance in hearing impaired listeners. Previous studies using ABR, on the other hand, did not use frequency specific stimuli and were based on subjective segmentation techniques that did not take into account the residual noise levels in the averaged waveform. The work in this thesis aims at investigating and improving the use of simultaneously recorded tone burst OAE and ABR for assessing frequency specific loudness growth in normal-hearing and hearing-impaired listeners. First, an optimal set of parameters for the OAE estimator is selected based on mean square error criteria. Second, a new signal-to-noise-ratio (SNR) estimation procedure is developed that attempts to take into account non-stationary noise sources present in ABR recordings. Third, several objective ABR segmentation and noise control procedures are tested for estimating loudness growth. Additionally, SNR estimates are compared with ABR loudness growth estimation errors in an attempt to examine dependencies between residual noise levels in averaged ABR waveforms and estimation performance. Results show that for normal listeners and with 1 kHz tone bursts, both OAE and ABR loudness growth estimators can perform within range of standard psychoacoustical procedures. With hearing impaired listeners, or with 4 kHz tone bursts, the performance of the OAE estimator produced a higher mean-square error with respect to a psychoacoustical measure of loudness than most of the ABR estimators. The performance of ABR estimators with hearing-impaired listeners is close to, but not as accurate as the standard psychoacoustical procedures.
机译:据推测,人类对响度的感觉是多种刺激强度的函数,它们以复杂的方式变化,无法简单地由听众的阈值和不适水平来解释。使用客观程序来估计响度增长与刺激强度的关系的能力可能潜在地允许为无法执行标准主观听觉测试的患者提供定制的非线性助听器。一些研究人员研究了使用诱发性听觉脑干反应(ABR)和耳声发射(OAE)作为人类响度增长的生理指标的可行性。 OAE研究的结果令人鼓舞,但缺乏对其参数的选择和听力障碍听众的方法学表现的测量方法的调查。另一方面,先前使用ABR的研究并未使用特定频率的刺激,而是基于主观分割技术,该技术未考虑平均波形中的残留噪声水平。本文的工作旨在调查和改进同时记录的音频突发OAE和ABR的使用,以评估正常听觉和听力受损的听众的特定频率响度增长。首先,基于均方误差标准选择OAE估计器的最佳参数集。其次,开发了一种新的信噪比(SNR)估计程序,该程序试图考虑ABR记录中存在的非平稳噪声源。第三,测试了几种客观的ABR分割和噪声控制程序,以估计响度的增长。此外,将SNR估计值与ABR响度增长估计误差进行比较,以尝试检查平均ABR波形中残留噪声水平与估计性能之间的依赖性。结果表明,对于普通听众和具有1 kHz音调猝发的情况,OAE和ABR响度增长估计器均可以在标准心理声学程序范围内执行。对于听力受损的听众,或具有4 kHz音调猝发,与大多数ABR估计器相比,OAE估计器的性能在响度的心理声学测量上产生了更高的均方误差。听力受损听众的ABR估算器的性能接近但不如标准的心理声学程序准确。

著录项

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Health Sciences Audiology.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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