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一个显示出尖锐调谐和高灵敏度的主动式耳蜗模型。

An active cochlear model showing sharp tuning and high sensitivity.

作者信息

Neely S T, Kim D O

出版信息

Hear Res. 1983 Feb;9(2):123-30. doi: 10.1016/0378-5955(83)90022-9.

Abstract

Recent in vivo measurements of cochlear-partition motion indicate very high sensitivity and sharp mechanical tuning similar to the tuning of single cochlear nerve fibers. Our experience with mathematical models of the cochlea leads us to believe that this type of mechanical response requires the presence of active elements in the cochlea. We have developed an active cochlear model which incorporates negative damping components; this model produces partition displacement in good agreement with many of the mechanical and neural tuning characteristics which have been observed in vivo by other researchers. We suggest that the negative damping components of our model may represent an active mechanical behavior of the outer hair cells, functioning in the electromechanical environment of the normal cochlea.

摘要

最近对耳蜗隔运动的体内测量表明,其具有非常高的灵敏度和尖锐的机械调谐,类似于单个耳蜗神经纤维的调谐。我们对耳蜗数学模型的经验使我们相信,这种类型的机械反应需要耳蜗中存在有源元件。我们开发了一种有源耳蜗模型,该模型包含负阻尼组件;该模型产生的隔位移与其他研究人员在体内观察到的许多机械和神经调谐特征非常吻合。我们认为,我们模型中的负阻尼组件可能代表了外毛细胞的一种有源机械行为,在正常耳蜗的机电环境中发挥作用。

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