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Efferent vestibular system in the toadfish: action upon horizontal semicircular canal afferents

机译:ad鱼的前庭传出系统:作用于水平半规管传入

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摘要

The influence of the efferent vestibular system (EVS) upon the background discharge and response dynamics of horizontal semicircular canal afferents was examined in the toadfish. In one set of experiments the EVS was activated using a behavioral paradigm; in the second, electrical shocks were applied to the efferent vestibular nucleus in the brain stem. The afferent's background discharge and responses to rotation were recorded before and during efferent stimulation. Both EVS activation paradigms gave qualitatively similar results: a facilitation of the afferent's rate, while the animal was at rest or in motion, and a reduction in response sensitivity. Afferents were not affected uniformly: low-gain, velocity-sensitive afferents were weakly influenced, while high-gain and acceleration afferents having low rates were the most excited. The afferents' phase of response was unmodified by electrical EVS stimulation. In many afferents a prominent form of response nonlinearity is discharge silencing over large portions of the stimulus cycle. Efferent-evoked rate increase was often sufficient to produce a full-cycle bidirectional response. Caloric facilitation of afferent rate confirmed that the EVS-induced sensitivity decrease was rate independent. These results show a dual action of the efferent system: (1) facilitating the afferent's rate and (2) reducing its sensitivity to adequate stimulation that may be correlated with the dual EVS synaptic innervation of the labyrinth, namely postsynaptic efferent-afferent synapses and presynaptic efferent-hair cell synapses.
机译:在蟾蜍中检查了传出前庭系统(EVS)对水平半圆形管传入的背景放电和响应动力学的影响。在一组实验中,使用行为范式激活了EVS。在第二步中,将电击施加到脑干的传出前庭核。在传出刺激之前和期间,记录传出者的背景放电和对旋转的响应。这两种EVS激活范例在质量上都具有相似的结果:动物处于静止或运动状态时,传入速率的简化,以及响应灵敏度的降低。传入的感受不是均匀的:低增益,对速度敏感的传入的影响微弱,而速率低的高增益和加速传入的感受最为激动。 EVS电刺激未改变传入反应的阶段。在许多传入中,响应非线性的一种主要形式是在刺激周期的大部分时间内产生放电静默。诱发传出速率的增加通常足以产生全周期双向响应。热量传入速率的简化证实了EVS引起的敏感性降低与速率无关。这些结果显示了传出系统的双重作用:(1)促进传入速率,(2)降低其对足够刺激的敏感性,这可能与迷宫的双重EVS突触神经支配有关,即突触后传出-突触和突触前突触。传出毛细胞突触。

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