首页> 外文期刊>The Journal of the Acoustical Society of America >Polarity effects on place pitch and loudness for three cochlear-implant designs and at different cochlear sites
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Polarity effects on place pitch and loudness for three cochlear-implant designs and at different cochlear sites

机译:极性对三种人工耳蜗设计以及不同人工耳蜗位置的音调和响度的影响

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Users of Advanced Bionics, MedEl, and Cochlear Corp. implants balanced the loudness of trains of asymmetric pulses of opposite polarities presented in monopolar mode. For the Advanced Bionics and MedEl users the pulses were triphasic and consisted of a 32-μs central phase flanked by two 32-μs phases of opposite polarity and half the amplitude. The central phase was either anodic (TP-A) or cathodic (TP-C). For the Cochlear Corp. users, pulses consisted of two 32-μs phases of the same polarity separated by an 8-μs gap, flanked by two 32-μs phases of the opposite polarity, each of which was separated from the central portion by a 58-μs gap. The central portion of these quadraphasic pulses was either anodic (QP-A) or cathodic (QP-C), and all phases had the same amplitude. The current needed to achieve matched loudness was lower for the anodic than for the cathodic stimuli. This polarity effect was similar across all electrode locations studied, including the most apical electrode of the MedEl device which stimulates the very apex of the cochlea. In addition, when quadraphasic pulses were presented in bipolar mode, listeners reported hearing a lower pitch when the central portion was anodic at the more apical, than at the more basal, electrode. The results replicate previous reports that, unlike the results of most animal studies, human cochlear implant listeners are more sensitive to anodic than to cathodic currents, and extend those findings to a wider range of cochlear sites, implant types, and pulse shapes.
机译:Advanced Bionics,MedEl和Cochlear Corp.植入物的用户平衡了以单极模式显示的相反极性的不对称脉冲序列的响度。对于Advanced Bionics和MedEl用户,脉冲是三相的,由一个32μs中心相位和两个极性相反,振幅为一半的32μs相组成。中心相为阳极(TP-A)或阴极(TP-C)。对于Cochlear Corp.用户,脉冲由两个相同极性的32-μs相组成,相隔8μs间隙,两侧是两个极性相反的32-μs相,每个相与中心部分之间被一个间隙为58μs这些四相脉冲的中心部分是阳极(QP-A)或阴极(QP-C),并且所有相位的振幅相同。阳极达到匹配响度所需的电流比阴极刺激要低。在所有研究的电极位置,包括MedEl装置的最顶端电极(刺激耳蜗的最顶端),这种极性效应都是相似的。另外,当在双极模式下出现四相脉冲时,听众报告说,当中心部分在较尖的地方而不是在较基本的电极处阳极时,听到的音调较低。这些结果重复了以前的报告,即不同于大多数动物研究的结果,人类耳蜗植入听众对阳极比对阴极电流更敏感,并将这些发现扩展到更大范围的耳蜗部位,植入物类型和脉冲形状。

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