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Glutamatergic reticulospinal neurons in the mouse: developmental origins, axon projections, and functional connectivity

机译:鼠标谷氨酸谷氨酸底椎间体神经元:发育起源,轴突突起和功能连接

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Subcortical descending glutamatergic neurons, such as reticulospinal (RS) neurons, play decisive roles in the initiation and control of many motor behaviors in mammals. However, little is known about the mechanisms used by RS neurons to control spinal motor networks because most of the neuronal elements involved have not been identified and characterized. In this review, we compare, in the embryonic mouse, the timing of developmental events that lead to the formation of synaptic connections between RS and spinal cord neurons. We then summarize our recent research in the postnatal mouse on the organization of synaptic connections between RS neurons and lumbar axial motoneurons (MNs), hindlimb MNs, and commissural interneurons. Finally, we give a brief account of some of the most recent studies on the intrinsic capabilities for plasticity of the mammalian RS system. The present review should give an updated insight into how functional specificity in RS motor networks emerges.
机译:皮塔下降谷氨酸神经元,如括号(RS)神经元,在哺乳动物中起始和控制许多电机行为的起始和控制中起着决定性作用。然而,关于RS神经元使用的机制对控制脊柱电机网络的机制很少,因为尚未识别和表征涉及的大多数神经元元素。在本次综述中,我们在胚胎鼠中进行比较,导致RS和脊髓神经元之间形成突触连接的发展事件的时序。然后,我们总结了我们最近在出生后老鼠的研究,以组织RS神经元和腰椎轴向运动神经元(MNS),后肢MNS和外界之间的突触轴向组织。最后,我们简要介绍一些关于哺乳动物RS系统的可塑性内在功能的最新研究。目前的审查应了解RS电机网络中功能特异性如何出现的更新洞察。

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