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通过调幅和插入具有短脉冲间隔的脉冲实现的电听觉中的时间-音高敏感性。

Temporal-pitch sensitivity in electric hearing with amplitude modulation and inserted pulses with short inter-pulse intervals.

作者信息

Lindenbeck Martin J, Laback Bernhard, Majdak Piotr, Srinivasan Sridhar

机构信息

Acoustics Research Institute, Austrian Academy of Sciences, Wohllebengasse 12-14, 1040 Vienna, Austria.

出版信息

J Acoust Soc Am. 2020 Feb;147(2):777. doi: 10.1121/10.0000610.

Abstract

Listeners with cochlear implants (CIs) typically show poor sensitivity to the temporal-envelope pitch of high-rate pulse trains. Sensitivity to interaural time differences improves when adding pulses with short inter-pulse intervals (SIPIs) to high-rate pulse trains. In the current study, monaural temporal-pitch sensitivity with SIPI pulses was investigated for six CI listeners. Amplitude-modulated single-electrode stimuli, representing the coding of the fundamental frequency (F0) in the envelope of a high-rate carrier, were used. Two SIPI-insertion approaches, five modulation depths, two typical speech-F0s, and two carrier rates were tested. SIPI pulses were inserted either in every amplitude-modulation period (full-rate SIPI) to support the F0 cue or in every other amplitude-modulation period (half-rate SIPI) to circumvent a potential rate limitation at higher F0s. The results demonstrate that full-rate SIPI pulses improve temporal-pitch sensitivity across F0s and particularly at low modulation depths where envelope-pitch cues are weak. The half-rate SIPI pulses did not circumvent the limitation and further increased variability across listeners. Further, no effect of the carrier rate was found. Thus, the SIPI approach appears to be a promising approach to enhance CI listeners' access to temporal-envelope pitch cues at pulse rates used clinically.

摘要

植入人工耳蜗(CI)的听众通常对高速脉冲序列的时间包络音调敏感度较差。在高速脉冲序列中添加脉冲间隔短(SIPI)的脉冲时,双耳时间差敏感度会提高。在本研究中,对6名人工耳蜗听众的单耳时间音调敏感度进行了研究,使用了幅度调制的单电极刺激,其代表高速载波包络中基频(F0)的编码。测试了两种SIPI插入方法、五种调制深度、两种典型语音F0和两种载波速率。SIPI脉冲要么在每个幅度调制周期(全速率SIPI)插入以支持F0线索,要么在每隔一个幅度调制周期(半速率SIPI)插入以规避较高F0时的潜在速率限制。结果表明,全速率SIPI脉冲可提高跨F0的时间音调敏感度,尤其是在包络音调线索较弱的低调制深度下。半速率SIPI脉冲并未规避该限制,反而进一步增加了听众之间的变异性。此外,未发现载波速率的影响。因此,SIPI方法似乎是一种很有前景的方法,可增强人工耳蜗听众在临床使用的脉冲速率下对时间包络音调线索的获取。

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