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准确估计同时掩蔽中的压缩程度,可以模拟正常听力者的听力障碍。

Accurate estimation of compression in simultaneous masking enables the simulation of hearing impairment for normal-hearing listeners.

机构信息

Faculty of Systems Engineering, Wakayama University, Wakayama, Japan.

出版信息

Adv Exp Med Biol. 2013;787:73-80. doi: 10.1007/978-1-4614-1590-9_9.

Abstract

This chapter presents a unified gammachirp framework for -estimating cochlear compression and synthesizing sounds with inverse compression that -cancels the compression of a normal-hearing (NH) listener to simulate the -experience of a hearing-impaired (HI) listener. The compressive gammachirp (cGC) filter was -fitted to notched-noise masking data to derive level-dependent -filter shapes and the cochlear compression function (e.g., Patterson et al., J Acoust Soc Am 114:1529-1542, 2003). The procedure is based on the analysis/synthesis technique of Irino and Patterson (IEEE Trans Audio Speech Lang Process 14:2222-2232, 2006) using a dynamic cGC filterbank (dcGC-FB). The level dependency of the dcGC-FB can be reversed to produce inverse compression and resynthesize sounds in a form that cancels the compression applied by the -auditory system of the NH listener. The chapter shows that the estimation of compression in simultaneous masking is improved if the notched-noise procedure for the derivation of auditory filter shape includes noise bands with different levels. Since both the estimation and resynthesis are performed within the gammachirp framework, it is possible for a specific NH listener to experience the loss of a -specific HI listener.

摘要

这一章提出了一个统一的伽马啁啾框架,用于估计耳蜗的压缩,并合成具有逆压缩的声音,以模拟听力受损(HI)听众的体验。压缩的伽马啁啾(cGC)滤波器被拟合到有缺口噪声掩蔽数据中,以导出依赖于水平的滤波器形状和耳蜗压缩函数(例如,Patterson 等人,J Acoust Soc Am 114:1529-1542, 2003)。该过程基于 Irino 和 Patterson 的分析/合成技术(IEEE Trans Audio Speech Lang Process 14:2222-2232, 2006),使用动态 cGC 滤波器组(dcGC-FB)。dcGC-FB 的水平依赖性可以反转,以产生逆压缩,并以一种取消 NH 听众听觉系统应用的压缩的形式重新合成声音。这一章表明,如果用于推导听觉滤波器形状的缺口噪声过程包括不同水平的噪声带,则同时掩蔽中的压缩估计会得到改善。由于估计和重新合成都是在伽马啁啾框架内进行的,因此对于特定的 NH 听众来说,体验特定 HI 听众的损失是有可能的。

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