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低速率电听觉中的双耳时间信息:编码不准确及响度的影响

Binaural timing information in electric hearing at low rates: Effects of inaccurate encoding and loudness.

作者信息

Egger Katharina, Majdak Piotr, Laback Bernhard

机构信息

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

出版信息

J Acoust Soc Am. 2017 May;141(5):3164. doi: 10.1121/1.4982888.

DOI:10.1121/1.4982888
PMID:28599571
Abstract

Stimulation strategies for cochlear implants potentially impose timing limitations that may hinder the correct encoding and representation of interaural time differences (ITDs) in realistic bilateral signals. This study aimed to specify the tolerable room for inaccurate encoding of ITDs at low rates by investigating the perceptual degradation due to the removal of individual pulses at various levels of loudness. Unmodulated, 100-pulses-per-second pulse trains were presented at a single, interaurally pitch-matched electrode pair. In experiment I, ITD thresholds were measured applying different degrees of bilateral, interaurally-uncorrelated pulse removal. The ITD sensitivity deteriorated with increasing degree of pulse removal, with significant deterioration for degrees of 16% or greater. In experiment II, the interaction between loudness and pulse removal was investigated. Louder stimuli yielded better ITD sensitivity, however, no further improvement was found for stimuli louder than "medium." When removing 8% of the pulses, the ITD sensitivity deteriorated significantly across the entire loudness range tested. A loudness-induced compensation for the deterioration of ITD sensitivity due to pulse removal seems to be feasible for soft stimuli but not for medium or loud stimuli. Overall, our findings suggest that the degree of pulse removal employed in low-rate channels within coding strategies should not exceed 8%.

摘要

人工耳蜗的刺激策略可能会带来时间限制,这可能会阻碍在实际双边信号中对耳间时间差(ITD)进行正确编码和表征。本研究旨在通过研究在不同响度水平下去除单个脉冲所导致的感知退化,来确定低速率下ITD编码不准确的可容忍范围。在一对耳间音高匹配的电极上呈现每秒100个脉冲的未调制脉冲序列。在实验I中,测量了应用不同程度的双边、耳间不相关脉冲去除时的ITD阈值。随着脉冲去除程度的增加,ITD敏感性下降,当去除程度达到16%或更高时,敏感性显著下降。在实验II中,研究了响度与脉冲去除之间的相互作用。响度较大的刺激产生了更好的ITD敏感性,然而,对于比“中等”响度更大的刺激,未发现进一步的改善。当去除8%的脉冲时,在整个测试的响度范围内,ITD敏感性显著下降。对于软刺激,响度引起的对由于脉冲去除导致的ITD敏感性下降的补偿似乎是可行的,但对于中等或大声刺激则不然。总体而言,我们的研究结果表明,编码策略中低速率通道所采用的脉冲去除程度不应超过8%。

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引用本文的文献

1
Effects of Monaural Temporal Electrode Asynchrony and Channel Interactions in Bilateral and Unilateral Cochlear-Implant Stimulation.单耳电极时序失配和通道间相互作用对双侧和单侧人工耳蜗刺激的影响。
Trends Hear. 2024 Jan-Dec;28:23312165241271340. doi: 10.1177/23312165241271340.
2
Temporal-pitch sensitivity in electric hearing with amplitude modulation and inserted pulses with short inter-pulse intervals.通过调幅和插入具有短脉冲间隔的脉冲实现的电听觉中的时间-音高敏感性。
J Acoust Soc Am. 2020 Feb;147(2):777. doi: 10.1121/10.0000610.
3
Improving Interaural Time Difference Sensitivity Using Short Inter-pulse Intervals with Amplitude-Modulated Pulse Trains in Bilateral Cochlear Implants.
使用短声间脉冲间隔和调制幅度的脉冲串提高双侧人工耳蜗的耳间时间差敏感性。
J Assoc Res Otolaryngol. 2020 Feb;21(1):105-120. doi: 10.1007/s10162-020-00743-6. Epub 2020 Feb 10.
4
Introducing Short Interpulse Intervals in High-Rate Pulse Trains Enhances Binaural Timing Sensitivity in Electric Hearing.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。
J Assoc Res Otolaryngol. 2018 Jun;19(3):301-315. doi: 10.1007/s10162-018-0659-7. Epub 2018 Mar 16.