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首页> 外文期刊>Hearing Research: An International Journal >Place dependent stimulation rates improve pitch perception in cochlear implantees with single-sided deafness
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Place dependent stimulation rates improve pitch perception in cochlear implantees with single-sided deafness

机译:位置依赖性刺激率可改善单侧耳聋人工耳蜗的音高知觉

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In normal hearing, the pitch of an acoustic tone can theoretically be encoded by either the place of stimulation in the cochlea or the corresponding rate of vibration. Thus spectral attributes and temporal fine structure of an acoustic signal are naturally correlated. Cochlear implants (CIs), neural prosthetic devices that restore hearing in the profoundly hearing impaired, currently disregard this mechanism; electrical stimulation is provided at fixed electrode positions with default place independent stimulation rate assignments. This does not account for individual cochlear encoding depending on electrode array placement, variations in insertion depth, and the proximity to nerve fibers. Encoding pitch in such manner delivers limited tonal information. Consequently, music appraisal in CI users is often rated cacophonic while speech perception in quiet is close to normal in top performers. We hypothesize that this limitation in electric stimulation is at least partially due to the mismatch between frequency and place encoding in CIs. In the present study, we determined individual electrode locations by analysis of cochlear radiographic images obtained after surgery and calculated place dependent stimulation rates according to models of the normal tonotopic function. Pitch matching in CI users with single-sided deafness shows that place dependent stimulation rates allow thus far unparalleled restoration of tonotopic pitch perception. Collapsed data of matched pitch frequencies as a function of calculated electrical stimulation rate were well fitted by linear regression (R-2 = 0.878). Sound processing strategies incorporating place dependent stimulation rates are expected to improve pitch perception in CI users. (C) 2016 Elsevier B.V. All rights reserved.
机译:在正常听力中,理论上可以通过耳蜗中的刺激位置或相应的振动速率来编码声调的音高。因此,声学信号的频谱属性和时间精细结构自然相关。耳蜗植入物(CIs)是一种神经修复装置,可在严重的听力受损者中恢复听力,目前不考虑这种机制。在固定电极位置提供电刺激,并具有默认的位置独立刺激率分配。根据电极阵列的位置,插入深度的变化以及与神经纤维的接近程度,这并不能说明个别的耳蜗编码。以这种方式编码音调传送有限的音调信息。因此,CI用户的音乐评估通常被评定为弱音,而安静环境中的语音感知在顶级表演者中接近正常水平。我们假设电刺激的这种限制至少部分是由于CI中频率和位置编码之间的不匹配。在本研究中,我们通过分析手术后获得的耳蜗放射线图像确定单个电极的位置,并根据正常的Tonotopic功能模型计算与位置有关的刺激率。 CI用户单侧耳聋的音调匹配表明,与位置有关的刺激率迄今可实现无与伦比的音调音调知觉恢复。通过线性回归(R-2 = 0.878)可以很好地拟合匹配的基音频率与计算出的电刺激速率相关的崩溃数据。声音处理策略结合了位置依赖性刺激率,有望改善CI用户的音高感知。 (C)2016 Elsevier B.V.保留所有权利。

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