首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >A Site-Selection Strategy Based on Polarity Sensitivity for Cochlear Implants: Effects on Spectro-Temporal Resolution and Speech Perception
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A Site-Selection Strategy Based on Polarity Sensitivity for Cochlear Implants: Effects on Spectro-Temporal Resolution and Speech Perception

机译:基于极性敏感性的人工耳蜗植入位置选择策略:对光谱-时间分辨率和语音感知的影响。

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摘要

Thresholds of asymmetric pulses presented to cochlear implant (CI) listeners depend on polarity in a way that differs across subjects and electrodes. It has been suggested that lower thresholds for cathodic-dominant compared to anodic-dominant pulses reflect good local neural health. We evaluated the hypothesis that this polarity effect (PE) can be used in a site-selection strategy to improve speech perception and spectro-temporal resolution. Detection thresholds were measured in eight users of Advanced Bionics CIs for 80-pps, triphasic, monopolar pulse trains where the central high-amplitude phase was either anodic or cathodic. Two experimental MAPs were then generated for each subject by deactivating the five electrodes with either the highest or the lowest PE magnitudes (cathodic minus anodic threshold). Performance with the two experimental MAPs was evaluated using two spectro-temporal tests (Spectro-Temporal Ripple for Investigating Processor EffectivenesS (STRIPES; Archer-Boyd et al. in J Acoust Soc Am 144:2983–2997, ) and Spectral-Temporally Modulated Ripple Test (SMRT; Aronoff and Landsberger in J Acoust Soc Am 134:EL217–EL222, )) and with speech recognition in quiet and in noise. Performance was also measured with an experimental MAP that used all electrodes, similar to the subjects’ clinical MAP. The PE varied strongly across subjects and electrodes, with substantial magnitudes relative to the electrical dynamic range. There were no significant differences in performance between the three MAPs at group level, but there were significant effects at subject level—not all of which were in the hypothesized direction—consistent with previous reports of a large variability in CI users’ performance and in the potential benefit of site-selection strategies. The STRIPES but not the SMRT test successfully predicted which strategy produced the best speech-in-noise performance on a subject-by-subject basis. The average PE across electrodes correlated significantly with subject age, duration of deafness, and speech perception scores, consistent with a relationship between PE and neural health. These findings motivate further investigations into site-specific measures of neural health and their application to CI processing strategies.
机译:呈现给人工耳蜗(CI)听众的非对称脉冲的阈值取决于极性,其方式在受试者和电极之间会有所不同。已经提出,与阳极主导脉冲相比,阴极主导脉冲的较低阈值反映出良好的局部神经健康。我们评估了这种极性效应(PE)可以用于站点选择策略以改善语音感知和频谱时间分辨率的假设。在八次高级仿生学CIs的用户中测量了80 pps的三相单极性脉冲序列的检测阈值,其中中心高振幅相为阳极或阴极。然后,通过停用具有最高或最低PE值(正负阳极阈值)的五个电极,为每个受试者生成两个实验MAP。使用两个频谱时变测试(用于研究处理器效能的频谱时变波纹(STRIPES; Archer-Boyd等人,J Acoust Soc Am 144:2983-2997))和频谱时变波纹评估了两个实验性MAP的性能。测试(SMRT; Aronoff和Landsberger在J Acoust Soc Am 134:EL217–EL222,中进行),并在安静和嘈杂的情况下进行语音识别。还通过使用所有电极的实验性MAP来测量性能,类似于受试者的临床MAP。 PE在受检者和电极之间变化很大,相对于电动态范围的幅度很大。在小组级别上的三个MAP之间的表现没有显着差异,但是在主题级别上有显着的影响-并非所有的影响都在假设的方向上-与先前关于CI用户的表现和选址策略的潜在好处。 STRIPES(而不是SMRT)测试成功地预测了哪种策略在逐个对象的基础上产生了最佳的语音噪声性能。电极上的平均PE与受试者的年龄,耳聋的持续时间和言语感知得分显着相关,这与PE和神经健康之间的关系一致。这些发现激发了对神经健康特定部位测量及其在CI处理策略中的应用的进一步研究。

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