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在高速脉冲序列中引入短脉冲间隔可增强电听觉中的双耳时间敏感性。

Introducing Short Interpulse Intervals in High-Rate Pulse Trains Enhances Binaural Timing Sensitivity in Electric Hearing.

作者信息

Srinivasan Sridhar, Laback Bernhard, Majdak Piotr, Delgutte Bertrand

机构信息

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

Eaton-Peabody Laboratories, Massachusetts Eye and Ear, 243 Charles Street, Boston, MA, 02114, USA.

出版信息

J Assoc Res Otolaryngol. 2018 Jun;19(3):301-315. doi: 10.1007/s10162-018-0659-7. Epub 2018 Mar 16.

Abstract

Common envelope-based stimulation strategies for cochlear implants (CIs) use relatively high carrier rates in order to properly encode the speech envelope. For such rates, CI listeners show poor sensitivity to interaural time differences (ITDs), which are important for horizontal-plane sound localization and spatial unmasking of speech. Based on the findings from previous studies, we predicted that ITD sensitivity can be enhanced by including pulses with short interpulse intervals (SIPIs), to a 1000-pulses-per-second (pps) reference pulse train. We measured the sensitivity of eight bilateral CI listeners to ITD while systematically varying both the rate at which SIPIs are introduced ("SIPI rate") and the time interval between the two pulses forming a SIPI ("SIPI fraction"). Results showed largely enhanced ITD sensitivity relative to the reference condition, with the size of the improvement increasing with decreasing SIPI rate and decreasing SIPI fraction. For the lowest SIPI fraction, insertion of extra pulses brought ITD sensitivity to the level measured for low-rate pulse trains with rates matching the SIPI rates. The results appear promising for the goal of enhancing ITD sensitivity with envelope-based CI strategies by inserting SIPI pulses at strategic times in speech stimuli.

摘要

用于人工耳蜗(CI)的基于包络的常见刺激策略使用相对较高的载波速率,以便正确编码语音包络。对于这样的速率,CI使用者对耳间时间差(ITD)的敏感度较差,而耳间时间差对于水平面声音定位和语音的空间掩蔽很重要。基于先前研究的结果,我们预测,通过在每秒1000个脉冲(pps)的参考脉冲序列中加入具有短脉冲间隔(SIPI)的脉冲,可以提高ITD敏感度。我们测量了8名双侧CI使用者对ITD的敏感度,同时系统地改变引入SIPI的速率(“SIPI速率”)以及构成SIPI的两个脉冲之间的时间间隔(“SIPI分数”)。结果表明,相对于参考条件,ITD敏感度大幅提高,改善程度随着SIPI速率降低和SIPI分数减小而增加。对于最低的SIPI分数,额外脉冲的插入使ITD敏感度达到了与SIPI速率匹配的低速率脉冲序列所测得的水平。对于通过在语音刺激的关键时间插入SIPI脉冲来提高基于包络的CI策略的ITD敏感度这一目标而言,这些结果似乎很有前景。

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