...
首页> 外文期刊>Trends in Hearing >Modeling the Effects of Sensorineural Hearing Loss on Sound Localization in the Median Plane
【24h】

Modeling the Effects of Sensorineural Hearing Loss on Sound Localization in the Median Plane

机译:模拟中耳平面中感音神经性听力损失对声音定位的影响

获取原文
           

摘要

Listeners use monaural spectral cues to localize sound sources in sagittal planes (along the up-down and front-back directions). How sensorineural hearing loss affects the salience of monaural spectral cues is unclear. To simulate the effects of outer-hair-cell (OHC) dysfunction and the contribution of different auditory-nerve fiber types on localization performance, we incorporated a nonlinear model of the auditory periphery into a model of sagittal-plane sound localization for normal-hearing listeners. The localization model was first evaluated in its ability to predict the effects of spectral cue modifications for normal-hearing listeners. Then, we used it to simulate various degrees of OHC dysfunction applied to different types of auditory-nerve fibers. Predicted localization performance was hardly affected by mild OHC dysfunction but was strongly degraded in conditions involving severe and complete OHC dysfunction. These predictions resemble the usually observed degradation in localization performance induced by sensorineural hearing loss. Predicted localization performance was best when preserving fibers with medium spontaneous rates, which is particularly important in view of noise-induced hearing loss associated with degeneration of this fiber type. On average across listeners, predicted localization performance was strongly related to level discrimination sensitivity of auditory-nerve fibers, indicating an essential role of this coding property for localization accuracy in sagittal planes.
机译:听众使用单声道频谱提示将声源定位在矢状平面内(沿上下方向和前后方向)。尚不清楚感觉神经性听力损失如何影响单声道频谱提示的显着性。为了模拟外毛细胞(OHC)功能障碍的影响以及不同听觉神经纤维类型对定位性能的影响,我们将听觉外围的非线性模型合并到矢状面声音定位模型中以进行正常听力听众。首先评估本地化模型预测正常听众的频谱提示修改效果的能力。然后,我们用它来模拟应用于不同类型的听觉神经纤维的各种程度的OHC功能障碍。预测的定位性能几乎不受轻度OHC功能障碍的影响,但在涉及严重和完全OHC功能障碍的条件下会大大降低。这些预测类似于通常观察到的由感音神经性听力损失引起的定位性能下降。当保留中等自发率的纤维时,预测的定位性能是最佳的,考虑到与这种纤维变性相关的噪声引起的听力损失,这一点尤其重要。平均而言,在所有听众中,预测的定位性能与听觉神经纤维的水平分辨灵敏度密切相关,这表明此编码属性对于矢状面中定位精度的重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号