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大鼠延髓头端腹外侧区非脊髓投射神经元中坐骨神经传入纤维对迷走神经输入的门控作用

Gating of vagal inputs by sciatic afferents in nonspinally projecting neurons in the rat rostral ventrolateral medulla oblongata.

作者信息

Zagon A, Hughes D I

机构信息

Department of Anatomy and Developmental Biology, Royal Free and University College Medical School, Rowland Hill Street, London NW3 2PF, UK.

出版信息

Eur J Neurosci. 2001 Feb;13(4):781-92. doi: 10.1046/j.0953-816x.2000.01445.x.

Abstract

Integration and coordination of somato-visceral sensory information is crucial to achieve adaptive behavioural responses. We have recently shown that sensory vagal and somato-sensory (sciatic nerve) inputs converge in neurons of the rostral ventrolateral medulla oblongata, which was implicated in adjusting visceral activities to changing somatic performances. In the present study, the neuronal mechanism of interaction between sciatic and vagal sensory inputs was examined in the rostral ventrolateral medulla oblongata using in vivo intracellular recording and labelling. Conditioning stimulation of the contralateral sciatic nerve (2 V) led to a time-dependent inhibition of responses to vagal stimulation (100 microA) in each RVLM neuron that received convergent sciatic and vagal sensory inputs (n = 50). None of these neurons had direct spinal projections, and only 8% of them exhibited a visible response to stimulation of the aortic depressor nerve. A significant attenuation of the amplitude of vagal test responses was present for up to 800 ms of conditioning delay, although the duration of this sciatico-vagal inhibition was greatly dependent on the intensity of both stimuli. The electrophysiological data indicated that sciatico-vagal inhibition is mediated presynaptically, via activation of GABAB receptors. Morphological evidence of axo-axonic interactions that may underlie sciatico-vagal inhibition was subsequently found in the electron microscope. It is suggested that during movements of the hindleg, activation of sciatic sensory fibres leads to re-patterning of neuronal activity in RVLM neurons via inhibition of visceral sensory inputs. Sciatico-vagal inhibition is likely to affect the activity of those RVLM neurons that modulate higher neuronal activities via ascending projections.

摘要

躯体-内脏感觉信息的整合与协调对于实现适应性行为反应至关重要。我们最近发现,感觉性迷走神经和躯体感觉(坐骨神经)输入在延髓头端腹外侧的神经元中汇聚,这与根据躯体活动变化调节内脏活动有关。在本研究中,利用体内细胞内记录和标记技术,研究了延髓头端腹外侧坐骨神经和迷走神经感觉输入之间相互作用的神经元机制。对接受坐骨神经和迷走神经感觉输入汇聚的每个延髓头端腹外侧神经元(n = 50),对侧坐骨神经的条件刺激(2 V)导致对迷走神经刺激(100 μA)的反应出现时间依赖性抑制。这些神经元均无直接的脊髓投射,其中只有8%的神经元对主动脉减压神经刺激表现出可见反应。尽管这种坐骨神经-迷走神经抑制的持续时间很大程度上取决于两种刺激的强度,但在长达800 ms的条件刺激延迟期间,迷走神经测试反应的幅度均有显著衰减。电生理数据表明,坐骨神经-迷走神经抑制是通过GABAB受体的激活在突触前介导的。随后在电子显微镜下发现了可能是坐骨神经-迷走神经抑制基础的轴-轴突相互作用的形态学证据。研究表明,在后腿运动过程中,坐骨神经感觉纤维的激活通过抑制内脏感觉输入导致延髓头端腹外侧神经元的神经活动重新模式化。坐骨神经-迷走神经抑制可能会影响那些通过上行投射调节更高神经活动的延髓头端腹外侧神经元的活动。

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