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首页> 外文期刊>Hearing Research: An International Journal >Threshold predictions of different pulse shapes using a human auditory nerve fibre model containing persistent sodium and slow potassium currents.
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Threshold predictions of different pulse shapes using a human auditory nerve fibre model containing persistent sodium and slow potassium currents.

机译:使用包含持续钠和慢钾电流的人类听觉神经纤维模型,可以预测不同脉冲形状的阈值。

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摘要

The ability of a human auditory nerve fibre computational model to predict threshold differences for biphasic, pseudomonophasic and alternating monophasic waveforms was investigated. The effect of increasing the interphase gap, interpulse interval and pulse rate on thresholds was also simulated. Simulations were performed for both anodic-first and cathodic-first stimuli. Results indicated that the model correctly predicted threshold reductions for pseudomonophasic compared to biphasic waveforms, although reduction for alternating monophasic waveforms was underestimated. Threshold reductions were more pronounced for cathodic-first stimuli compared to anodic-first stimuli. Reversal of the phases in pseudomonophasic stimuli suggested a threshold reduction for anodic-first stimuli, but a threshold increase in cathodic-first stimuli. Inclusion of the persistent sodium and slow potassium currents in the model resulted in a reasonably accurate prediction of the non-monotonic threshold behaviour for pulse rates higher than 1000 pps. However, the model did not correctly predict the threshold changes observed for low pulse rate biphasic and alternating monophasic waveforms. It was suggested that these results could in part be explained by the difference in the refractory periods between real and simulated auditory nerve fibres, but also by the lack of representation of stochasticity observed in real auditory nerve fibres in our auditory nerve model.
机译:研究了人类听觉神经纤维计算模型预测双相,伪单相和交替单相波形的阈值差异的能力。还模拟了增加相间间隙,脉冲间隔和脉冲率对阈值的影响。对阳极优先和阴极优先刺激都进行了模拟。结果表明,该模型正确预测了与单相波形相比伪单相的阈值降低,尽管低估了交替单相波形的降低。与阳极优先刺激相比,阴极优先刺激的阈值降低更为明显。伪单相刺激中的相逆转提示阳极优先刺激的阈值降低,但阴极优先刺激的阈值升高。在模型中包括持续的钠电流和慢钾电流,可以合理准确地预测脉冲速率高于1000 pps的非单调阈值行为。但是,该模型不能正确预测在低脉冲频率双相和交替单相波形中观察到的阈值变化。提示这些结果部分可以由真实听神经纤维和模拟听神经纤维之间的不应期差异来解释,也可以由听觉神经模型中真实听神经纤维中观察不到的随机性表示来解释。

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