Suppr超能文献

一种使用时间精细结构和包络线索的听觉调制检测双路径模型。

A two-path model of auditory modulation detection using temporal fine structure and envelope cues.

作者信息

Ewert Stephan D, Paraouty Nihaad, Lorenzi Christian

机构信息

Medizinische Physik and Cluster of Excellence Hearing4All, Universität Oldenburg, 26111, Oldenburg, Germany.

Laboratoire des systèmes perceptifs, Département d'études cognitives, École normale supérieure, CNRS, PSL Research University, Paris, France.

出版信息

Eur J Neurosci. 2020 Mar;51(5):1265-1278. doi: 10.1111/ejn.13846. Epub 2018 Feb 12.

Abstract

A model using temporal-envelope cues was previously developed to explain perceptual interference effects between amplitude modulation and frequency modulation (FM). As that model could not accurately predict FM sensitivity and the interference effects, temporal fine structure (TFS) cues were added to the model. Thus, following the initial stage of the model consisting of a linear filter bank simulating cochlear filtering, processing was split into an 'envelope path' based on envelope power cues and a 'TFS path' based on a measure of the distribution of time intervals between successive zero-crossings. This yielded independent detectability indices for envelope and TFS cues, which were optimally combined to produce a single decision statistic. Independent internal noises in the envelope and TFS paths were adjusted to match the data. Simulations indicate that TFS cues are required to account for FM data for young normal-hearing listeners and that TFS processing is impaired for both older normal-hearing and hearing-impaired listeners. The role of TFS was further assessed by relating the monaural FM sensitivity to measures of interaural phase difference, commonly assumed to rely on binaural TFS sensitivity. The model demonstrates that binaural TFS sensitivity is considerably lower than monaural TFS sensitivity. Similar to FM thresholds, interaural phase difference sensitivity declined with age and hearing loss, although higher degradations were observed in binaural temporal processing compared to monaural processing. Overall, this model provides a novel tool to explore the mechanisms involved in FM processing in the normal auditory system and the degradations in FM sensitivity with ageing and hearing loss.

摘要

之前开发了一个使用时间包络线索的模型来解释调幅和调频(FM)之间的感知干扰效应。由于该模型无法准确预测FM敏感性和干扰效应,因此在模型中加入了时间精细结构(TFS)线索。因此,在由模拟耳蜗滤波的线性滤波器组组成的模型初始阶段之后,处理过程被分为基于包络功率线索的“包络路径”和基于连续过零点之间时间间隔分布测量的“TFS路径”。这产生了包络和TFS线索的独立可检测性指数,这些指数被优化组合以产生单个决策统计量。调整包络和TFS路径中的独立内部噪声以匹配数据。模拟表明,对于年轻的正常听力听众,需要TFS线索来解释FM数据,并且对于年龄较大的正常听力和听力受损听众,TFS处理都会受损。通过将单耳FM敏感性与通常认为依赖双耳TFS敏感性的双耳相位差测量相关联,进一步评估了TFS的作用。该模型表明,双耳TFS敏感性远低于单耳TFS敏感性。与FM阈值类似,双耳相位差敏感性随着年龄和听力损失而下降,尽管与单耳处理相比,双耳时间处理中观察到更高的退化。总体而言,该模型提供了一种新颖的工具,用于探索正常听觉系统中FM处理所涉及的机制以及随着年龄增长和听力损失而导致的FM敏感性退化。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验