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大鼠迷走神经刺激后皮质和海马中去甲肾上腺素细胞外浓度升高。

Increased extracellular concentrations of norepinephrine in cortex and hippocampus following vagus nerve stimulation in the rat.

作者信息

Roosevelt Rodney W, Smith Douglas C, Clough Richard W, Jensen Robert A, Browning Ronald A

机构信息

Brain and Cognitive Sciences Program, Department of Psychology, Southern Illinois University, IL 62901-6512, USA.

出版信息

Brain Res. 2006 Nov 13;1119(1):124-32. doi: 10.1016/j.brainres.2006.08.048. Epub 2006 Sep 7.


DOI:10.1016/j.brainres.2006.08.048
PMID:16962076
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1751174/
Abstract

The vagus nerve is an important source of afferent information about visceral states and it provides input to the locus coeruleus (LC), the major source of norepinephrine (NE) in the brain. It has been suggested that the effects of electrical stimulation of the vagus nerve on learning and memory, mood, seizure suppression, and recovery of function following brain damage are mediated, in part, by the release of brain NE. The hypothesis that left vagus nerve stimulation (VNS) at the cervical level results in increased extracellular NE concentrations in the cortex and hippocampus was tested at four stimulus intensities: 0.0, 0.25, 0.5, and 1.0 mA. Stimulation at 0.0 and 0.25 mA had no effect on NE concentrations, while the 0.5 mA stimulation increased NE concentrations significantly in the hippocampus (23%), but not the cortex. However, 1.0 mA stimulation significantly increased NE concentrations in both the cortex (39%) and hippocampus (28%) bilaterally. The increases in NE were transient and confined to the stimulation periods. VNS did not alter NE concentrations in either structure during the inter-stimulation baseline periods. No differences were observed between NE levels in the initial baseline and the post-stimulation baselines. These findings support the hypothesis that VNS increases extracellular NE concentrations in both the hippocampus and cortex.

摘要

迷走神经是有关内脏状态的传入信息的重要来源,它向蓝斑(LC)提供输入,而蓝斑是大脑中去甲肾上腺素(NE)的主要来源。有人提出,迷走神经电刺激对学习和记忆、情绪、癫痫抑制以及脑损伤后功能恢复的影响,部分是由脑内NE的释放介导的。在四种刺激强度(0.0、0.25、0.5和1.0毫安)下,测试了颈部水平左侧迷走神经刺激(VNS)导致皮质和海马细胞外NE浓度升高的假设。0.0和0.25毫安的刺激对NE浓度没有影响,而0.5毫安的刺激使海马中的NE浓度显著升高(23%),但皮质中没有。然而,1.0毫安的刺激使双侧皮质(39%)和海马(28%)中的NE浓度显著升高。NE的升高是短暂的,且局限于刺激期。在刺激间期的基线期,VNS并未改变任一结构中的NE浓度。在初始基线和刺激后基线的NE水平之间未观察到差异。这些发现支持了VNS会增加海马和皮质中细胞外NE浓度的假设。

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本文引用的文献

[1]
Electrical stimulation of the vagus nerve enhances cognitive and motor recovery following moderate fluid percussion injury in the rat.

J Neurotrauma. 2005-12

[2]
A one-year comparison of vagus nerve stimulation with treatment as usual for treatment-resistant depression.

Biol Psychiatry. 2005-9-1

[3]
Recordings from the rat locus coeruleus during acute vagal nerve stimulation in the anaesthetised rat.

Neurosci Lett. 2005-5-13

[4]
Vagus nerve stimulation therapy: 2-year prospective open-label study of 40 subjects with refractory epilepsy and low IQ who are living in long-term care facilities.

Epilepsy Behav. 2005-5

[5]
Vagus nerve stimulation therapy.

Drugs Today (Barc). 2004-6

[6]
Brain blood-flow alterations induced by therapeutic vagus nerve stimulation in partial epilepsy: II. prolonged effects at high and low levels of stimulation.

Epilepsia. 2004-9

[7]
Effect of vagus nerve stimulation on adults with pharmacoresistant generalized epilepsy syndromes.

Seizure. 2004-7

[8]
Improvement in alertness and behavior in children treated with combination topiramate and vagus nerve stimulation.

Epilepsy Behav. 2004-4

[9]
Vagus nerve stimulation (VNS) is effective in a rat model of antidepressant action.

J Psychiatr Res. 2004

[10]
The effects of peripheral vagal nerve stimulation at a memory-modulating intensity on norepinephrine output in the basolateral amygdala.

Behav Neurosci. 2004-2

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