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参数调整的时频掩蔽算法的混响伪影去除在耳蜗植入刺激。

Parameter tuning of time-frequency masking algorithms for reverberant artifact removal within the cochlear implant stimulus.

机构信息

Department of Electrical and Computer Engineering, Duke University, Durham, NC, USA.

出版信息

Cochlear Implants Int. 2022 Nov;23(6):309-316. doi: 10.1080/14670100.2022.2096182. Epub 2022 Jul 23.

Abstract

Cochlear implant recipients struggle to understand speech in reverberant environments. To restore speech perception, artifacts due to reverberant reflections can be removed from the cochlear implant stimulus by applying a matrix of gain values, a technique referred to as . In this study, two common time-frequency masking strategies are implemented within cochlear implant processing, either introducing complete retention or deletion of stimulus components using a binary mask or continuous attenuation of stimulus components using a ratio mask. Parameters of each masking strategy control the level of attenuation imposed by the gain values. In this study, we perceptually tune the parameters of the masking strategy to determine a balance between speech retention and artifact removal. We measure the intelligibility of reverberant signals mitigated by each strategy with speech recognition testing in normal-hearing listeners using vocoding as a simulation of cochlear implant perception. For both masking strategies, we find parameterizations that maximize the intelligibility of the mitigated signals. At the best-performing parameterizations, binary-masked reverberant signals yield larger intelligibility improvements than ratio-masked signals. The results provide a perceptually optimized objective for the removal of reverberant artifacts from cochlear implant stimuli, facilitating improved speech recognition performance for cochlear implant recipients in reverberant environments.

摘要

植入人工耳蜗的患者在混响环境中难以理解言语。为了恢复言语感知,可以通过应用增益值矩阵来消除人工耳蜗刺激中的混响反射伪迹,这种技术称为 。在这项研究中,在人工耳蜗处理中实现了两种常见的时频掩蔽策略,要么使用二进制掩蔽完全保留或删除刺激成分,要么使用比率掩蔽连续衰减刺激成分。每种掩蔽策略的参数控制增益值施加的衰减程度。在这项研究中,我们通过语音识别测试来感知调整掩蔽策略的参数,以在保留语音和去除伪迹之间取得平衡,正常听力受试者使用语音合成作为人工耳蜗感知的模拟来测试每种策略缓解后的混响信号的可懂度。对于这两种掩蔽策略,我们找到了可以最大程度提高缓解后信号可懂度的参数化设置。在性能最佳的参数化设置下,二进制掩蔽的混响信号比比率掩蔽的信号产生更大的可懂度提高。研究结果为从人工耳蜗刺激中去除混响伪迹提供了一种感知优化的目标,从而为在混响环境中使用人工耳蜗的患者提高言语识别性能。

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