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功能性丘脑皮质拓扑结构的烟碱样改变。

Nicotinic alteration of functional thalamocortical topography.

作者信息

Lee Charles C, Yanagawa Yuchio, Imaizumi Kazuo

机构信息

aDepartment of Comparative Biomedical Sciences, Louisiana State University, School of Veterinary Medicine, Baton Rouge, Louisiana, USA bDepartment of Genetic and Behavioral Neuroscience, Gunma University Graduate School of Medicine, Maebashi, Japan.

出版信息

Neuroreport. 2015 Aug 19;26(12):688-94. doi: 10.1097/WNR.0000000000000409.

Abstract

The thalamocortical pathways form highly topographic connections from the primary sensory thalamic nuclei to the primary cortical areas. The synaptic properties of these thalamocortical connections are modifiable by activation from various neuromodulators, such as acetylcholine. Cholinergic activation can alter functional properties in both the developing and the mature nervous system. Moreover, environmental factors, such as nicotine, can activate these receptors, although the circuit-level alterations resulting from such nicotinic activation of sensory neural circuits remain largely unexplored. Therefore, we examined alterations to the functional topography of thalamocortical circuits in the developing sensory pathways of the mouse. Photostimulation by uncaging of glutamate was used to map these functional thalamocortical alterations in response to nicotinic receptor activation. As a result, we found that activation of forebrain nicotinic acetylcholine receptors results in an expansion and enhancement of functional thalamocortical topographies as assessed in brain slice preparations using laser-scanning photostimulation by uncaging of glutamate. These physiological changes were correlated with the neuroanatomical expression of nicotinic acetylcholine receptor subtypes (α7 and β2). These circuit-level alterations may provide a neural substrate underlying the plastic development and reshaping of thalamocortical circuitry in response to nicotinic receptor activation.

摘要

丘脑皮质通路形成了从主要感觉丘脑核到主要皮质区域的高度拓扑连接。这些丘脑皮质连接的突触特性可被各种神经调质(如乙酰胆碱)的激活所改变。胆碱能激活可改变发育中和成熟神经系统的功能特性。此外,环境因素(如尼古丁)可激活这些受体,尽管感觉神经回路的这种烟碱样激活所导致的回路水平改变在很大程度上仍未得到探索。因此,我们研究了小鼠发育中的感觉通路中丘脑皮质回路功能拓扑结构的改变。通过谷氨酸释放的光刺激来绘制这些响应烟碱样受体激活的功能性丘脑皮质改变。结果,我们发现,在前脑烟碱样乙酰胆碱受体激活后,如在脑片制备中使用谷氨酸释放的激光扫描光刺激所评估的那样,功能性丘脑皮质拓扑结构会扩展和增强。这些生理变化与烟碱样乙酰胆碱受体亚型(α7和β2)的神经解剖学表达相关。这些回路水平的改变可能为丘脑皮质回路响应烟碱样受体激活的可塑性发育和重塑提供神经基础。

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Critical-period plasticity in the visual cortex.视皮层的关键期可塑性。
Annu Rev Neurosci. 2012;35:309-30. doi: 10.1146/annurev-neuro-061010-113813. Epub 2012 Mar 29.

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