首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Efferent-Mediated Fluctuations in Vestibular Nerve Discharge: A Novel Positive-Feedback Mechanism of Efferent Control
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Efferent-Mediated Fluctuations in Vestibular Nerve Discharge: A Novel Positive-Feedback Mechanism of Efferent Control

机译:前庭神经放电的传出介导的波动:传出控制的新型正反馈机制

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摘要

We compared the background discharge of vestibular nerve afferents in barbiturate-anesthetized and unanesthetized, decerebrate chinchillas. Based on their interspike-interval statistics, units were categorized as regular, intermediate, or irregular. Background discharge rates were higher in irregular units from decerebrates compared to anesthetized preparations; no such difference was observed for regular or intermediate units. Large fluctuations in discharge rate were confined to intermediate and irregular units in decerebrates, but were not seen at all in anesthetized animals. The most prominent examples of fluctuations consisted of oscillations with periods exceeding 500 s and peak-to-peak amplitudes as large as 300 spikes/s. Several observations show that the fluctuations are mediated by the efferent vestibular system (EVS): (1) they are abolished when the vestibular nerve is cut proximal to the recording electrode; (2) their amplitude is correlated with the size of efferent-mediated rotational responses in individual units; and (3) they occur even when vital signs are stable. Previous studies had provided evidence that the EVS involves positive feedback: vestibular nerve afferents and EVS neurons excite one another. To study how oscillations could be produced, we developed a nonlinear model of positive feedback in which afferent feed-forward discharge was nonlinearly related to its inputs from hair cells and the EVS, while these inputs declined (adapted) as discharge was prolonged. Provided that the gain of the efferent feedback loop was sufficiently large, the model showed oscillations similar to those observed experimentally. Although large fluctuations in afferent discharge are unlikely to occur under physiological circumstances, positive feedback may be a normal feature that can amplify the influence of the EVS.
机译:我们比较了巴比妥酸盐麻醉和未麻醉的小脑龙猫的前庭神经传入体的背景放电。根据其钉间间隔统计,单位分为常规,中级或不规则。与麻醉的制剂相比,来自不规则动物的不规则单位的背景排泄率更高。对于常规单元或中间单元,没有观察到这种差异。出院率的大幅度波动仅限于大脑中的中间和不规则单位,但在麻醉动物中根本看不到。波动最突出的例子包括周期超过500秒的振荡和峰峰值幅度高达300峰值/秒。几项观察结果表明,这种波动是由传出的前庭系统(EVS)介导的:(1)当前庭神经在记录电极附近切开时,这些波动被消除了。 (2)它们的振幅与各个单位传出的旋转反应的大小有关; (3)即使生命体征稳定时也会发生。先前的研究提供了证据,表明EVS涉及正反馈:前庭神经传入神经和EVS神经元彼此兴奋。为了研究如何产生振荡,我们建立了一个正反馈非线性模型,其中传入前馈放电与毛细胞和EVS的输入非线性相关,而随着放电时间的延长,这些输入下降(适应)。假设传出反馈回路的增益足够大,该模型将显示与实验观察到的相似的振荡。尽管在生理情况下不太可能发生传入放电大的波动,但是正反馈可能是正常的功能,可以放大EVS的影响。

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