首页> 美国卫生研究院文献>The Journal of the Acoustical Society of America >Effect of mismatched place-of-stimulation on the salience of binaural cues in conditions that simulate bilateral cochlear-implant listening
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Effect of mismatched place-of-stimulation on the salience of binaural cues in conditions that simulate bilateral cochlear-implant listening

机译:模拟双侧人工耳蜗植入条件下刺激位置不匹配对双耳线索突显的影响

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摘要

Although bilateral cochlear implantation has the potential to improve sound localization and speech understanding in noise, obstacles exist in presenting maximally useful binaural information to bilateral cochlear-implant (CI) users. One obstacle is that electrode arrays may differ in cochlear position by several millimeters, thereby stimulating different neural populations. Effects of interaural frequency mismatch on binaural processing were studied in normal-hearing (NH) listeners using band-limited pulse trains, thereby avoiding confounding factors that may occur in CI users. In experiment 1, binaural image fusion was measured to capture perceptual number, location, and compactness. Subjects heard a single, compact image on 73% of the trials. In experiment 2, intracranial image location was measured for different interaural time differences (ITDs) and interaural level differences (ILDs). For larger mismatch, locations perceptually shifted towards the ear with the higher carrier frequency. In experiment 3, ITD and ILD just-noticeable differences (JNDs) were measured. JNDs increased with decreasing bandwidth and increasing mismatch, but were always measurable up to 3 mm of mismatch. If binaural-hearing mechanisms are similar between NH and CI subjects, these results may explain reduced sensitivity of ITDs and ILDs in CI users. Large mismatches may lead to distorted spatial maps and reduced binaural image fusion.
机译:尽管双侧人工耳蜗植入有可能改善声音中的声音定位和语音理解能力,但是在向双侧人工耳蜗(CI)用户提供最大有用的双耳信息时仍然存在障碍。一个障碍是电极阵列的耳蜗位置可能相差几毫米,从而刺激了不同的神经种群。使用带限脉冲序列,在正常听力(NH)听众中研究了耳间频率不匹配对双耳处理的影响,从而避免了CI用户中可能出现的混淆因素。在实验1中,对双耳图像融合进行了测量,以捕获感知次数,位置和紧密度。在73%的试验中,受试者听到了一张紧凑的图像。在实验2中,针对不同的听觉时间差(ITD)和听觉水平差(ILD)测量了颅内图像位置。对于较大的失配,在较高的载波频率下,位置会在听觉上移向耳朵。在实验3中,测量了ITD和ILD的显着差异(JND)。 JND随着带宽的减小和失配的增加而增加,但始终可测量高达3μmm的失配。如果NH和CI对象之间的双耳听觉机制相似,则这些结果可以解释CI用户中ITD和ILD的敏感性降低。较大的不匹配可能会导致空间图失真并减少双耳图像融合。

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