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首页> 外文期刊>Brain research >Influence of norepinephrine on somatosensory neuronal responses in the rat thalamus: a combined modeling and in vivo multi-channel, multi-neuron recording study.
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Influence of norepinephrine on somatosensory neuronal responses in the rat thalamus: a combined modeling and in vivo multi-channel, multi-neuron recording study.

机译:去甲肾上腺素对大鼠丘脑体感神经元反应的影响:结合建模和体内多通道,多神经元记录的研究。

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Norepinephrine released within primary sensory circuits from locus coeruleus afferent fibers can produce a spectrum of modulatory actions on spontaneous or sensory-evoked activity of individual neurons. Within the ventral posterior medial thalamus, membrane currents modulated by norepinephrine have been identified. However, the relationship between the cellular effects of norepinephrine and the impact of norepinephrine release on populations of neurons encoding sensory signals is still open to question. To address this lacuna in understanding the net impact of the noradrenergic system on sensory signal processing, a computational model of the rat trigeminal somatosensory thalamus was generated. The effects of independent manipulation of different cellular actions of norepinephrine on simulated afferent input to the computational model were then examined. The results of these simulations aided in the design of in vivo neural ensemble recording experiments where sensory-driven responses of thalamic neurons were measured before and during locus coeruleus activation in waking animals. Together the simulated and experimental results reveal several key insights regarding the regulation of neural network operation by norepinephrine including: 1) cell-specific modulatory actions of norepinephrine, 2) mechanisms of norepinephrine action that can improve the tuning of the network and increase the signal-to-noise ratio of cellular responses in order to enhance network representation of salient stimulus features and 3) identification of the dynamic range of thalamic neuron function through which norepinephrine operates.
机译:在原位感觉回路中从蓝藻传入纤维释放的去甲肾上腺素可对单个神经元的自发或感觉诱发的活动产生一系列调节作用。在腹内侧后丘脑内,已确定了去甲肾上腺素调节的膜电流。但是,去甲肾上腺素的细胞作用与去甲肾上腺素释放对编码感觉信号的神经元群体的影响之间的关系仍然值得商question。为了解决这一空白,以理解去甲肾上腺素能系统对感觉信号处理的净影响,生成了大鼠三叉神经体感丘脑的计算模型。然后检查了去甲肾上腺素的不同细胞作用的独立操作对计算模型的模拟传入输入的影响。这些模拟的结果有助于设计体内神经系综记录实验,该实验在醒来的动物的蓝斑激活之前和期间测量丘脑神经元的感觉驱动反应。模拟和实验结果共同揭示了去甲肾上腺素对神经网络操作的调节的一些关键见解,包括:1)去甲肾上腺素的细胞特异性调节作用,2)去甲肾上腺素的作用机制可以改善网络的调节并增加信号-为了增强显着刺激特征的网络表示,以及3)识别去甲肾上腺素通过其起作用的丘脑神经元功能的动态范围,对细胞反应的噪声比进行了研究。

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