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首页> 外文期刊>Neuron >Frequency-independent synaptic transmission supports a linear vestibular behavior.
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Frequency-independent synaptic transmission supports a linear vestibular behavior.

机译:频率独立的突触传递支持线性前庭行为。

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摘要

The vestibular system is responsible for transforming head motion into precise eye, head, and body movements that rapidly stabilize gaze and posture. How do central excitatory synapses mediate behavioral outputs accurately matched to sensory inputs over a wide dynamic range? Here we demonstrate that vestibular afferent synapses in vitro express frequency-independent transmission that spans their in vivo dynamic range (5-150 spikes/s). As a result, the synaptic charge transfer per unit time is linearly related to vestibular afferent activity in both projection and intrinsic neurons of the vestibular nuclei. Neither postsynaptic glutamate receptor desensitization nor saturation affect the relative amplitude or frequency-independence of steady-state transmission. Finally, we show that vestibular nucleus neurons can transduce synaptic inputs into linear changes in firing rate output without relying on one-to-one calyceal transmission. These data provide a physiological basis for the remarkable linearity ofvestibular reflexes.
机译:前庭系统负责将头部运动转换为精确的眼睛,头部和身体运动,从而快速稳定视线和姿势。中央兴奋性突触如何在广泛的动态范围内介导行为输出与感觉输入精确匹配?在这里,我们证明了体外前庭传入突触表达频率独立的传输,跨越其体内动态范围(5-150峰值/秒)。结果,每单位时间的突触电荷转移与前庭核的投射神经元和内在神经元中的前庭传入活动线性相关。突触后谷氨酸受体脱敏或饱和都不会影响稳态传递的相对幅度或频率独立性。最后,我们表明前庭神经元神经元可以将突触输入转换为发射速率输出的线性变化,而无需依赖一对一的肾小管传递。这些数据为前庭反射的显着线性提供了生理基础。

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