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Neural and Behavioral Sensitivity to Interaural Time Differences Using Amplitude Modulated Tones with Mismatched Carrier Frequencies

机译:使用不匹配的载波频率的调幅音对听觉时间差的神经和行为敏感性

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摘要

Bilateral cochlear implantation is intended to provide the advantages of binaural hearing, including sound localization and better speech recognition in noise. In most modern implants, temporal information is carried by the envelope of pulsatile stimulation, and thresholds to interaural time differences (ITDs) are generally high compared to those obtained in normal hearing observers. One factor thought to influence ITD sensitivity is the overlap of neural populations stimulated on each side. The present study investigated the effects of acoustically stimulating bilaterally mismatched neural populations in two related paradigms: rabbit neural recordings and human psychophysical testing. The neural coding of interaural envelope timing information was measured in recordings from neurons in the inferior colliculus of the unanesthetized rabbit. Binaural beat stimuli with a 1-Hz difference in modulation frequency were presented at the best modulation frequency and intensity as the carrier frequencies at each ear were varied. Some neurons encoded envelope ITDs with carrier frequency mismatches as great as several octaves. The synchronization strength was typically nonmonotonically related to intensity. Psychophysical data showed that human listeners could also make use of binaural envelope cues for carrier mismatches of up to 2–3 octaves. Thus, the physiological and psychophysical data were broadly consistent, and suggest that bilateral cochlear implants should provide information sufficient to detect envelope ITDs even in the face of bilateral mismatch in the neural populations responding to stimulation. However, the strongly nonmonotonic synchronization to envelope ITDs suggests that the limited dynamic range with electrical stimulation may be an important consideration for ITD encoding.
机译:双侧耳蜗植入旨在提供双耳听力的优势,包括声音定位和噪声中更好的语音识别。在大多数现代植入物中,时间信息是由脉动刺激的包络所携带的,而耳间时间差(ITD)的阈值通常比正常听觉观察者所获得的阈值高。认为影响ITD敏感性的一个因素是在每一侧刺激的神经种群的重叠。本研究在两个相关范例中研究了声学刺激双侧不匹配神经种群的效果:兔子神经录音和人类心理物理测试。在未麻醉兔子下丘神经元的记录中测量了耳间包膜时间信息的神经编码。当每只耳朵的载波频率发生变化时,调制频率相差1 Hz的双耳节拍刺激以最佳调制频率和强度呈现。一些神经元编码的包络ITD的载波频率失配高达几个八度。同步强度通常与强度非单调相关。心理物理数据表明,人类听众还可以利用双耳包络线索来解决高达2-3个八度的载波不匹配问题。因此,生理和心理物理数据大致上是一致的,并且表明即使面对响应刺激的神经群体中的双边不匹配,双侧人工耳蜗也应提供足以检测包膜ITD的信息。但是,与包络ITD的强烈非单调同步表明,受电刺激的有限动态范围可能是ITD编码的重要考虑因素。

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