Shannon Robert V, Cruz Rachel J, Galvin John J
House Ear Institute, Communications and Auditory Neuroscience, Los Angeles, CA 90057-1922, USA.
Audiol Neurootol. 2011;16(2):113-23. doi: 10.1159/000315115. Epub 2010 Jul 17.
High stimulation rates in cochlear implants (CI) offer better temporal sampling, can induce stochastic-like firing of auditory neurons and can increase the electric dynamic range, all of which could improve CI speech performance. While commercial CI have employed increasingly high stimulation rates, no clear or consistent advantage has been shown for high rates. In this study, speech recognition was acutely measured with experimental processors in 7 CI subjects (Clarion CII users). The stimulation rate varied between (approx.) 600 and 4800 pulses per second per electrode (ppse) and the number of active electrodes varied between 4 and 16. Vowel, consonant, consonant-nucleus-consonant word and IEEE sentence recognition was acutely measured in quiet and in steady noise (+10 dB signal-to-noise ratio). Subjective quality ratings were obtained for each of the experimental processors in quiet and in noise. Except for a small difference for vowel recognition in quiet, there were no significant differences in performance among the experimental stimulation rates for any of the speech measures. There was also a small but significant increase in subjective quality rating as stimulation rates increased from 1200 to 2400 ppse in noise. Consistent with previous studies, performance significantly improved as the number of electrodes was increased from 4 to 8, but no significant difference showed between 8, 12 and 16 electrodes. Altogether, there was little-to-no advantage of high stimulation rates in quiet or in noise, at least for the present speech tests and conditions.
人工耳蜗(CI)的高刺激率能提供更好的时间采样,可诱发听觉神经元的随机样放电,并能增加电动态范围,所有这些都可能改善人工耳蜗的言语表现。虽然商业人工耳蜗已采用越来越高的刺激率,但尚未显示出高刺激率有明确或一致的优势。在本研究中,对7名人工耳蜗受试者(Clarion CII使用者)使用实验处理器急性测量言语识别能力。刺激率在每个电极每秒约600至4800个脉冲(ppse)之间变化,有源电极数量在4至16之间变化。在安静环境和稳定噪声(信噪比为+10 dB)中急性测量元音、辅音、辅音-元音-辅音单词和IEEE句子的识别能力。对每个实验处理器在安静和噪声环境下进行主观质量评分。除了在安静环境下元音识别有微小差异外,对于任何言语测量指标,不同实验刺激率之间的表现均无显著差异。在噪声环境中,当刺激率从1200 ppse增加到2400 ppse时,主观质量评分也有小幅但显著的提高。与先前的研究一致,当电极数量从4增加到8时,表现显著改善,但在8、12和16个电极之间未显示出显著差异。总之,至少对于目前的言语测试和条件,高刺激率在安静或噪声环境中几乎没有优势。