首页> 外文期刊>Audiology & neuro-otology >Electrically evoked auditory steady-state responses in a guinea pig model: latency estimates and effects of stimulus parameters.
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Electrically evoked auditory steady-state responses in a guinea pig model: latency estimates and effects of stimulus parameters.

机译:豚鼠模型中的电诱发听觉稳态反应:潜伏期估计值和刺激参数的影响。

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摘要

Cochlear implant speech processors typically extract envelope information of speech signals for presentation to the auditory nerve as modulated trains of electric pulses. Recent studies showed the feasibility of recording, at the scalp, the electrically evoked auditory steady-state response using amplitude-modulated electric stimuli. Sinusoidally amplitude-modulated electric stimuli were used to elicit such responses from guinea pigs in order to characterize this response. Response latencies were derived to provide insight regarding neural generator sites. Two distinct sites, one cortical and another more peripheral, were indicated by latency estimates of 22 and 2 ms, respectively, with the former evoked by lower (13-49 Hz) and the latter by higher (55-320 Hz) modulation frequencies. Furthermore, response amplitudes declined with increasing carrier frequency, exhibited a compressive growth with increasing modulation depths, and were sensitive to modulation depths to as low as 5%.
机译:耳蜗植入语音处理器通常提取语音信号的包络信息,以调制后的电脉冲序列的形式呈现给听觉神经。最近的研究表明,使用调幅电刺激在头皮上记录电诱发听觉稳态响应的可行性。使用正弦波幅度调制电刺激来诱发豚鼠的此类反应,以表征该反应。得出了响应潜伏期,以提供有关神经生成器站点的信息。两个不同的位置,一个皮层和另一个更外围,分别由22 ms和2 ms的等待时间估计指示,前者由较低(13-49 Hz)引起,后者由较高(55-320 Hz)调制频率引起。此外,响应幅度随载波频率的增加而下降,随调制深度的增加而出现压缩增长,并且对调制深度的敏感度低至5%。

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