首页> 美国卫生研究院文献>The Journal of Physiology >Efferent desensitization of auditory nerve fibre responses in the cochlea of the turtle Pseudemys scripta elegans.
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Efferent desensitization of auditory nerve fibre responses in the cochlea of the turtle Pseudemys scripta elegans.

机译:乌龟假单胞菌耳蜗的听神经纤维反应传出的脱敏作用。

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摘要

Extracellular recordings were made from single auditory afferents in the isolated half-head of the turtle, and changes in their acoustic sensitivity were examined following electrical stimulation of the efferent fibres to the basilar papilla. Short trains of efferent shocks caused a prolonged elevation of the pure tone thresholds of the auditory afferents and an abolition of their spontaneous activity. These changes could be demonstrated in a majority of recordings and without antidromic firing of the afferent. The amount of desensitization increased steeply with shock number and a train of ten closely spaced shocks could elevate the threshold at the most sensitive or characteristic frequency by four orders of magnitude. Desensitization also occurred with single efferent shocks at repetition frequencies exceeding 25/s. Discharge rate versus sound pressure functions were constructed for a number of afferents. The maximum slope of the functions, and the saturated firing rates were both reduced by efferent stimulation; there was also an over-all shift of the rate-intensity function to higher stimulus levels. Such effects would enable the afferent to signal a wider range of sound pressures. Efferent stimulation caused a broadening of the afferent frequency-threshold curves by removal of the narrowly-tuned region around the characteristic frequency. We suggest that the loss in tuning and concomitant improvement in temporal resolution may be a functionally important consequence of efferent action.
机译:从孤立的海龟半头的单个听觉传入细胞进行细胞外录音,并在将传出纤维电刺激至基底乳头后检查其声学敏感性的变化。短暂的传出电击导致听觉传入人的纯音阈值延长,并且自发活动消失。这些变化可以在大多数录音中得到证明,而无需对进来者进行反射击。脱敏的程度随着电击数的增加而急剧增加,一列十次紧密间隔的电击可以将最敏感或特征频率处的阈值提高四个数量级。在重复频率超过25 / s的单次电击中也会出现脱敏现象。构造了许多输入的放电速率与声压函数。功能的最大斜率和饱和点火率均因传出刺激而降低;速率强度函数也向较高的刺激水平整体转移。这样的效果将使传入者能够发出更大范围的声压信号。通过去除特征频率附近的微调区域,传出刺激导致传入频率阈值曲线变宽。我们建议,调音的损失和时间分辨率的相应改善可能是传出动作的重要功能后果。

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