首页> 外文期刊>The Journal of Comparative Neurology >Feedback in the Brainstem: An Excitatory Disynaptic Pathway for Control of Whisking
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Feedback in the Brainstem: An Excitatory Disynaptic Pathway for Control of Whisking

机译:脑干中的反馈:控制搅拌的兴奋性突触通路。

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Sensorimotor processing relies on hierarchical neuronal circuits to mediate sensory-driven behaviors. In the mouse vibrissa system, trigeminal brainstem circuits are thought to mediate the first stage of vibrissa scanning control via sensory feedback that provides reflexive protraction in response to stimulation. However, these circuits are not well defined. Here we describe a complete disynaptic sensory receptor-to-muscle circuit for positive feedback in vibrissa movement. We identified a novel region of trigeminal brainstem, spinal trigeminal nucleus pars muralis, which contains a class of vGluT2+ excitatory projection neurons involved in vibrissa motor control. Complementary single- and dual-labeling with traditional and virus tracers demonstrate that these neurons both receive primary inputs from vibrissa sensory afferent fibers and send monosynaptic connections to facial nucleus motoneurons that directly innervate vibrissa musculature. These anatomical results suggest a general role of disynaptic architecture in fast positive feedback for motor output that drives active sensation. J. Comp. Neurol. 523:921-942, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:感觉运动处理依赖于分级神经元电路来介导感觉驱动的行为。在小鼠触须系统中,认为三叉神经干电路通过感应反馈来介导触须扫描控制的第一阶段,该感应响应响应刺激而提供反射性伸出。但是,这些电路的定义不明确。在这里,我们描述了在触须运动中产生正反馈的完整的突触感觉受体-肌肉回路。我们确定了三叉神经脑干的一个新区域,脊三叉神经核pars muralis,其中包含一类vGluT2 +兴奋性投射神经元参与触须运动控制。与传统示踪剂和病毒示踪剂互补的单标记和双标记表明,这些神经元既从触须感觉传入纤维接收主要输入,又向单神经突神经元发送单突触连接,从而直接支配触须肌肉。这些解剖结果表明,突触结构在驱动主动感觉的电机输出的快速正反馈中具有一般作用。 J.比较神经元。 523:921-942,2015.(c)2014威利期刊公司

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