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调幅刺激下声学听力与电听力之间双耳时间差敏感性的时间进程差异。

Differences in the temporal course of interaural time difference sensitivity between acoustic and electric hearing in amplitude modulated stimuli.

作者信息

Hu Hongmei, Ewert Stephan D, McAlpine David, Dietz Mathias

机构信息

Medizinische Physik and Cluster of Excellence "Hearing4all," Universität Oldenburg, D-26111 Oldenburg, Germany.

Department of Linguistics, Australian Hearing Hub, Macquarie University, New South Wales 2109, Australia.

出版信息

J Acoust Soc Am. 2017 Mar;141(3):1862. doi: 10.1121/1.4977014.

DOI:10.1121/1.4977014
PMID:28372072
Abstract

Previous studies have shown that normal-hearing (NH) listeners' spatial perception of non-stationary interaural time differences (ITDs) is dominated by the carrier ITD during rising amplitude segments. Here, ITD sensitivity throughout the amplitude-modulation cycle in NH listeners and bilateral cochlear implant (CI) subjects is compared, the latter by means of direct stimulation of a single electrode pair. The data indicate that, while NH listeners are most sensitive to ITDs applied toward the beginning of a modulation cycle at 600 Hz, NH listeners at 200 Hz and especially bilateral CI subjects at 200 pulses per second (pps) are more sensitive to ITDs applied to the modulation maximum. This has implications for spatial-hearing in complex environments: NH listeners' dominant 600-Hz ITD information from the rising amplitude segments comprises direct sound information. The 200-pps low rate required to get ITD sensitivity in CI users results in a higher weight of pulses later in the modulation cycle where the source ITDs are more likely corrupted by reflections. This indirectly indicates that even if future binaural CI processors are able to provide perceptually exploitable ITD information, CI users will likely not get the full benefit from such pulse-based ITD cues in reverberant and other complex environments.

摘要

先前的研究表明,听力正常(NH)的听众对非平稳双耳时间差(ITD)的空间感知在振幅上升段由载波ITD主导。在此,比较了NH听众和双侧人工耳蜗(CI)受试者在整个调幅周期内的ITD敏感性,后者通过直接刺激单个电极对来实现。数据表明,虽然NH听众对在600赫兹调制周期开始时施加的ITD最敏感,但200赫兹的NH听众,尤其是每秒200脉冲(pps)的双侧CI受试者,对施加到调制最大值处的ITD更敏感。这对复杂环境中的空间听觉有影响:NH听众来自振幅上升段的占主导地位的600赫兹ITD信息包含直达声信息。在CI用户中获得ITD敏感性所需的200 pps低速率导致在调制周期后期脉冲权重更高,此时源ITD更有可能被反射破坏。这间接表明,即使未来的双耳CI处理器能够提供可感知利用的ITD信息,CI用户在混响和其他复杂环境中可能也无法从这种基于脉冲的ITD线索中获得全部益处。

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