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大鼠孤束核吻侧部内髓板投射神经元的生理和解剖特性。

Physiological and anatomical properties of intramedullary projection neurons in rat rostral nucleus of the solitary tract.

机构信息

Department of Biologic and Materials Sciences, School of Dentistry, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

J Neurophysiol. 2013 Sep;110(5):1130-43. doi: 10.1152/jn.00167.2013. Epub 2013 Jun 5.

Abstract

The rostral nucleus of the solitary tract (rNTS), the first-order relay of gustatory information, not only transmits sensory information to more rostral brain areas but also connects to various brain stem sites responsible for orofacial reflex activities. While much is known regarding ascending projections to the parabrachial nucleus, intramedullary projections to the reticular formation (which regulate oromotor reflexive behaviors) remain relatively unstudied. The present study examined the intrinsic firing properties of these neurons as well as their morphological properties and synaptic connectivity with primary sensory afferents. Using in vitro whole cell patch-clamp recording, we found that intramedullary projection neurons respond to depolarizing current injection with either tonic or bursting action potential trains and subsets of these groups of neurons express A-type potassium, H-like, and postinhibitory rebound currents. Approximately half of the intramedullary projection neurons tested received monosynaptic innervation from primary afferents, while the rest received polysynaptic innervation, indicating that at least a subpopulation of these neurons can be directly activated by incoming sensory information. Neuron morphological reconstructions revealed that many of these neurons possessed numerous dendritic spines and that neurons receiving monosynaptic primary afferent input have a greater spine density than those receiving polysynaptic primary afferent input. These results reveal that intramedullary projection neurons represent a heterogeneous class of rNTS neurons and, through both intrinsic voltage-gated ion channels and local circuit interactions, transform incoming gustatory information into signals governing oromotor reflexive behaviors.

摘要

孤束核吻侧部(rNTS)是味觉信息的一级中继,它不仅将感觉信息传递到更吻侧的脑区,还与负责口面部反射活动的各种脑干部位相连。虽然人们对向臂旁核的上行投射了解很多,但对网状结构内的髓内投射(调节口部运动反射行为)的研究相对较少。本研究检查了这些神经元的固有放电特性及其形态特性和与初级感觉传入的突触连接。使用体外全细胞膜片钳记录,我们发现,髓内投射神经元对去极化电流注入的反应是产生持续或爆发的动作电位串,这些神经元群体中的一部分表达 A 型钾、H 样和后抑制反弹电流。在测试的髓内投射神经元中,大约有一半接受初级传入的单突触支配,而其余的则接受多突触支配,这表明这些神经元中的至少一部分可以被传入的感觉信息直接激活。神经元形态重建表明,这些神经元中的许多都有许多树突棘,并且接收单突触初级传入输入的神经元的棘密度大于接收多突触初级传入输入的神经元。这些结果表明,髓内投射神经元代表 rNTS 神经元的异质群体,通过内在的电压门控离子通道和局部回路相互作用,将传入的味觉信息转化为控制口部运动反射行为的信号。

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