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Human Summating Potential Using Continuous Loop Averaging Deconvolution: Response Amplitudes Vary with Tone Burst Repetition Rate and Duration

机译:使用连续循环平均反卷积的人类求和潜力:响应幅度随音频突发重复率和持续时间而变化

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摘要

Electrocochleography (ECochG) to high repetition rate tone bursts may have advantages over ECochG to clicks with standard slow rates. Tone burst stimuli presented at a high repetition rate may enhance summating potential (SP) measurements by reducing neural contributions resulting from neural adaptation to high stimulus repetition rates. To allow for the analysis of the complex ECochG responses to high rates, we deconvolved responses using the Continuous Loop Averaging Deconvolution (CLAD) technique. We examined the effect of high stimulus repetition rate and stimulus duration on SP amplitude measurements made with extratympanic ECochG to tone bursts in 20 adult females with normal hearing. We used 500 and 2,000 Hz tone bursts of various stimulus durations (12, 6, 3 ms) and repetition rates (five rates ranging from 7.1 to 234.38/s). A within-subject repeated measures (rate x duration) analysis of variance was conducted. We found that, for both 500 and 2,000 Hz stimuli, the mean deconvolved SP amplitudes were larger at faster repetition rates (58.59 and 97.66/s) compared to slower repetition rates (7.1 and 19.53/s), and larger at shorter stimulus duration compared longer stimulus duration. Our concluding hypothesis is that large SP amplitude to short duration stimuli may originate primarily from neural excitation, and large SP amplitudes to long duration, fast repetition rate stimuli may originate from hair cell responses. While the hair cell or neural origins of the SP to various stimulus parameters remains to be validated, our results nevertheless provide normative data as a step toward applying the CLAD technique to understanding diseased ears.
机译:带有高重复率音调突发的心电图(ECochG)相对于具有标准慢速点击的ECochG具有优势。以高重复率呈现的音调突发刺激可以通过减少因神经适应高刺激重复率而导致的神经贡献来增强汇总电位(SP)测量。为了分析对高速率的复杂ECochG响应,我们使用连续循环平均反褶积(CLAD)技术对响应进行反卷积。我们检查了高刺激重复率和刺激持续时间对鼓室外ECochG对20名听力正常的成年女性音调爆发进行SP幅度测量的影响。我们使用了500和2,000 Hz的各种刺激持续时间(12、6、3 ms)和重复频率(五个频率范围从7.1到234.38 / s)的音频脉冲。进行受试者内部重复测量(比率x持续时间)方差分析。我们发现,对于500和2,000 Hz刺激,平均去卷积SP幅度在较高的重复频率下(58.59和97.66 / s)较大,而在较低的重复频率下(7.1和19.53 / s),在较短的刺激时间下较大刺激时间更长。我们的结论假设是,对短时间刺激的大SP振幅可能主要源自神经兴奋,而对长时间,快速重复率的大SP振幅可能源自毛细胞反应。虽然SP的毛细胞或神经起源与各种刺激参数仍有待验证,但我们的结果仍然提供了规范数据,是将CLAD技术应用于了解患病耳朵的一步。

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