Department of Hearing and Speech Sciences, University of Maryland, College Park, MD, 20742, USA,
J Assoc Res Otolaryngol. 2014 Feb;15(1):115-29. doi: 10.1007/s10162-013-0426-8. Epub 2013 Nov 21.
While bilateral cochlear implants (CIs) provide some binaural benefits, these benefits are limited compared to those observed in normal-hearing (NH) listeners. The large frequency-to-electrode allocation bandwidths (BWs) in CIs compared to auditory filter BWs in NH listeners increases the interaural fluctuation rate available for binaural unmasking, which may limit binaural benefits. The purpose of this work was to investigate the effect of interaural fluctuation rate on correlation change discrimination and binaural masking-level differences in NH listeners presented a CI simulation using a pulsed-sine vocoder. In experiment 1, correlation-change just-noticeable differences (JNDs) and tone-in-noise thresholds were measured for narrowband noises with different BWs and center frequencies (CFs). The results suggest that the BW, CF, and/or interaural fluctuation rate are important factors for correlation change discrimination. In experiment 2, the interaural fluctuation rate was systematically varied and dissociated from changes in BW and CF by using a pulsed-sine vocoder. Results indicated that the interaural fluctuation rate did not affect correlation change JNDs for correlated reference noises; however, slow interaural fluctuations increased correlation change JNDs for uncorrelated reference noises. In experiment 3, the BW, CF, and vocoder pulse rate were varied while interaural fluctuation rate was held constant. JNDs increased for increasing BW and decreased for increasing CF. In summary, relatively fast interaural fluctuation rates are not detrimental for detecting changes in interaural correlation. Thus, limiting factors to binaural benefits in CI listeners could be a result of other temporal and/or spectral deficiencies from electrical stimulation.
虽然双侧人工耳蜗(CI)提供了一些双耳益处,但与正常听力(NH)听众相比,这些益处是有限的。与 NH 听众的听觉滤波器带宽相比,CI 中的电极分配带宽(BW)较大,这增加了用于双耳掩蔽的耳间波动率,这可能限制了双耳益处。本工作的目的是研究耳间波动率对 NH 听众的相关变化辨别和双耳掩蔽级差的影响,使用脉冲正弦声码器为 CI 模拟。在实验 1 中,对于具有不同 BW 和中心频率(CF)的窄带噪声,测量了相关变化的刚好可察觉差异(JND)和噪声中的音调阈值。结果表明,BW、CF 和/或耳间波动率是相关变化辨别中的重要因素。在实验 2 中,通过使用脉冲正弦声码器,系统地改变了耳间波动率,并使其与 BW 和 CF 的变化分离。结果表明,耳间波动率不会影响相关参考噪声的相关变化 JND;然而,缓慢的耳间波动会增加不相关参考噪声的相关变化 JND。在实验 3 中,在保持耳间波动率不变的情况下,改变 BW、CF 和声码器脉冲率。JND 随着 BW 的增加而增加,随着 CF 的增加而减小。总之,相对较快的耳间波动率不会对检测耳间相关性变化产生不利影响。因此,CI 听众中双耳益处的限制因素可能是电刺激的其他时间和/或频谱缺陷的结果。