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使用“幻像电极”技术来扩展通过人工耳蜗可获得的音高范围。

Use of "phantom electrode" technique to extend the range of pitches available through a cochlear implant.

机构信息

Auditory Research and Development, Advanced Bionics LLC., Sylmar, California 91342, USA.

出版信息

Ear Hear. 2010 Oct;31(5):693-701. doi: 10.1097/AUD.0b013e3181e1d15e.

Abstract

OBJECTIVE

The range of pitch sensations available in cochlear implants (CIs) is conventionally thought to be limited by the location of the most apical and basal electrodes. However, partial bipolar stimulation, in which current is distributed to two intracochlear electrodes and one extracochlear electrode, can produce "phantom electrode" (PE) pitch percepts that extend beyond the pitch range available with physical electrodes. The goals of this study were (1) to determine the PE configuration that generated the lowest pitch relative to monopolar (MP) stimulation of the most apical electrode and (2) to determine the amount of pitch shift produced by different PE configurations.

DESIGN

Ten Advanced Bionics CI users (9 unilateral and 1 bilateral), implanted with the CII or HiRes 90k implant and the HiFocus 1, HiFocus 1j, or Helix electrode arrays participated in this study. PEs were created by simultaneously stimulating the primary and compensating electrodes in opposite phase. To test different PE configurations, the proportion of current delivered to the compensating electrode (sigma) and the electrode separation between the primary and compensatory electrode (D) were varied. To estimate the relative pitch of PEs, the lowest pitched PEs with primary electrodes 4 and 8 were compared with subsets of MP electrodes (1, 2, 3, 4, 5 and 5, 6, 7, 8, 9, respectively).

RESULTS

In all subjects, it was possible to identify sigma and D values that produced a PE that was lower in pitch than the MP stimulation of the primary electrode. In some subjects, increasing sigma and/or D produced progressively lower pitch percepts, whereas in others, PE pitch changed nonmonotonically with sigma and/or D. The amount of PE pitch shift could be estimated only for 14 cases; in seven cases, the pitch shift was <1 MP electrode, and in seven other cases, the pitch shift was between 1 and 2 MP electrodes.

CONCLUSIONS

PE stimulation can elicit pitch percepts lower than that of the most apical MP electrode; the PE pitch is lower by the equivalent of 0.5 to 2 MP electrodes.

摘要

目的

传统上认为,耳蜗植入物(CI)中可用的音高感觉范围受最顶端和最底部电极位置的限制。然而,部分双极刺激,其中电流分布到两个耳蜗内电极和一个耳蜗外电极,可以产生“幻像电极”(PE)音高感知,这些感知延伸到物理电极可用的音高范围之外。本研究的目的是:(1)确定产生相对最顶端电极的单极(MP)刺激的最低音高的 PE 配置;(2)确定不同 PE 配置产生的音高偏移量。

设计

10 名使用 Advanced Bionics CI 的用户(9 名单侧和 1 名双侧),植入 CII 或 HiRes 90k 植入物和 HiFocus 1、HiFocus 1j 或 Helix 电极阵列参加了这项研究。通过同时刺激相反相位的主电极和补偿电极来创建 PE。为了测试不同的 PE 配置,改变了输送到补偿电极的电流比例(sigma)和主电极与补偿电极之间的电极间隔(D)。为了估计 PE 的相对音高,将主电极 4 和 8 的最低音高 PE 与 MP 电极的子集(分别为 1、2、3、4、5 和 5、6、7、8、9)进行比较。

结果

在所有受试者中,都可以确定 sigma 和 D 值,这些值产生的 PE 音高低于主电极的 MP 刺激。在一些受试者中,增加 sigma 和/或 D 会产生逐渐降低的音高感知,而在其他受试者中,PE 音高随 sigma 和/或 D 呈非单调变化。只能对 14 例进行 PE 音高偏移量的估计;在 7 例中,音高偏移量<1 个 MP 电极,在另外 7 例中,音高偏移量在 1 到 2 个 MP 电极之间。

结论

PE 刺激可以引起低于最顶端 MP 电极的音高感知;PE 音高比最顶端 MP 电极低 0.5 到 2 个 MP 电极。

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