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蓝斑的相位性放电对于前额叶皮质中刺激诱发的γ振荡至关重要。

Locus coeruleus phasic discharge is essential for stimulus-induced gamma oscillations in the prefrontal cortex.

作者信息

Neves Ricardo M, van Keulen Silvia, Yang Mingyu, Logothetis Nikos K, Eschenko Oxana

机构信息

Max Planck Institute for Biological Cybernetics , Tübingen , Germany.

Centre for Imaging Sciences, Biomedical Imaging Institute, The University of Manchester , Manchester , United Kingdom.

出版信息

J Neurophysiol. 2018 Mar 1;119(3):904-920. doi: 10.1152/jn.00552.2017. Epub 2017 Nov 1.

Abstract

The locus coeruleus (LC) noradrenergic (NE) neuromodulatory system is critically involved in regulation of neural excitability via its diffuse ascending projections. Tonic NE release in the forebrain is essential for maintenance of vigilant states and increases the signal-to-noise ratio of cortical sensory responses. The impact of phasic NE release on cortical activity and sensory processing is less explored. We previously reported that LC microstimulation caused a transient desynchronization of population activity in the medial prefrontal cortex (mPFC), similar to noxious somatosensory stimuli. The LC receives nociceptive information from the medulla and therefore may mediate sensory signaling to its forebrain targets. Here we performed extracellular recordings in LC and mPFC while presenting noxious stimuli in urethane-anesthetized rats. A brief train of foot shocks produced a robust phasic response in the LC and a transient change in the mPFC power spectrum, with the strongest modulation in the gamma (30-90 Hz) range. The LC phasic response preceded prefrontal gamma power increase, and cortical modulation was proportional to the LC excitation. We also quantitatively characterized distinct cortical states and showed that sensory responses in both LC and mPFC depend on the ongoing cortical state. Finally, cessation of the LC firing by bilateral local iontophoretic injection of clonidine, an α-adrenoreceptor agonist, completely eliminated sensory responses in the mPFC without shifting cortex to a less excitable state. Together, our results suggest that the LC phasic response induces gamma power increase in the PFC and is essential for mediating sensory information along an ascending noxious pathway. NEW & NOTEWORTHY Our study shows linear relationships between locus coeruleus phasic excitation and the amplitude of gamma oscillations in the prefrontal cortex. Results suggest that the locus coeruleus phasic response is essential for mediating sensory information along an ascending noxious pathway.

摘要

蓝斑(LC)去甲肾上腺素能(NE)神经调节系统通过其广泛的上行投射,在调节神经兴奋性方面起着关键作用。前脑的持续性NE释放对于维持警觉状态至关重要,并能提高皮质感觉反应的信噪比。而阶段性NE释放对皮质活动和感觉处理的影响则较少被探究。我们之前报道过,LC微刺激会导致内侧前额叶皮质(mPFC)群体活动的短暂去同步化,类似于有害的躯体感觉刺激。LC从延髓接收伤害性信息,因此可能将感觉信号传递至其在前脑的靶点。在此,我们在给乌拉坦麻醉的大鼠施加有害刺激时,对LC和mPFC进行了细胞外记录。短暂的足部电击串在LC中产生了强烈的阶段性反应,并使mPFC功率谱发生短暂变化,其中在γ(30 - 90赫兹)频段的调制最为强烈。LC的阶段性反应先于前额叶γ功率增加,且皮质调制与LC兴奋程度成正比。我们还定量表征了不同的皮质状态,并表明LC和mPFC中的感觉反应均取决于当前的皮质状态。最后,通过双侧局部离子电渗注射α - 肾上腺素能受体激动剂可乐定使LC放电停止,完全消除了mPFC中的感觉反应,且未使皮质转变为兴奋性较低的状态。总之,我们的结果表明,LC的阶段性反应会诱导PFC中γ功率增加,并且对于沿着上行伤害性通路介导感觉信息至关重要。新发现与值得关注之处:我们的研究显示了蓝斑阶段性兴奋与前额叶皮质γ振荡幅度之间的线性关系。结果表明,蓝斑的阶段性反应对于沿着上行伤害性通路介导感觉信息至关重要。

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