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Interactions between epinephrine ascending vagal fibers and central noradrenergic systems in modulating memory for emotionally arousing events

机译:肾上腺素迷走神经纤维和中央去甲肾上腺素能系统之间的相互作用调节情绪激动事件的记忆

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摘要

It is well-established that exposure to emotionally laden events initiates secretion of the arousal-related hormone epinephrine in the periphery. These neuroendocrine changes and the subsequent increase in peripheral physiological output play an integral role in modulating brain systems involved in memory formation. The impermeability of the blood brain barrier to epinephrine represents an important obstacle in understanding how peripheral hormones initiate neurochemical changes in the brain that lead to effective memory formation. This obstacle necessitated the identity of a putative pathway capable of conveying physiological changes produced by epinephrine to limbic structures that incorporate arousal and affect related information into memory. A major theme of the proposed studies is that ascending fibers of the vagus nerve may represent such a mechanism. This hypothesis was tested by evaluating the contribution of ascending vagal fibers in modulating memory for responses learned under behavioral conditions that produce emotional arousal by manipulating appetitive stimuli. A combination of electrophysiological recording of vagal afferent fibers and in vivo microdialysis was employed in a second study to simultaneously assess how elevations in peripheral levels of epinephrine affect vagal nerve discharge and the subsequent potentiation of norepinephrine release in the basolateral amygdala. The final study used double immunohistochemistry labeling of c-fos and dopamine beta hydroxylase (DBH), the enzyme for norepinephrine synthesis to determine if epinephrine administration alone or stimulation of the vagus nerve at an intensity identical to that which improved memory in Experiment 1 produces similar patterns of neuronal activity in brain areas involved in processing memory for emotional events. Findings emerging from this collection of studies establish the importance of ascending fibers of the vagus nerve as an essential pathway for conveying the peripheral consequences of physiological arousal on brain systems that encode new information into memory storage.
机译:公认的是,暴露于情绪高涨的事件会引起周围觉醒相关激素肾上腺素的分泌。这些神经内分泌变化以及随后的周围生理输出增加在调节参与记忆形成的脑系统中起着不可或缺的作用。血脑屏障对肾上腺素的不可渗透性是理解周围激素如何引发大脑中导致有效记忆形成的神经化学变化的重要障碍。该障碍使得必须假定推定途径的身份,该途径能够将肾上腺素产生的生理变化传递到边缘结构,该边缘结构会引起唤醒并影响相关信息进入记忆。提出的研究的一个主要主题是迷走神经的上升纤维可能代表了这种机制。通过评估迷走神经纤维在调节记忆中对通过操纵刺激性刺激产生情绪唤醒的行为条件下学习的反应的贡献,来检验该假设。在第二项研究中,将迷走神经传入纤维的电生理记录与体内微透析相结合,以同时评估肾上腺素外周水平的升高如何影响迷走神经放电以及随后在基底外侧杏仁核中去甲肾上腺素释放的增强。最终研究使用了c-fos和多巴胺β羟化酶(DBH)(去甲肾上腺素合成的酶)的双重免疫组化标记,以确定是否单独使用肾上腺素或以与实验1中提高记忆力相同的强度刺激迷走神经会产生相似的结果处理情绪事件记忆的大脑区域神经元活动的模式。从这一系列研究中得出的发现确立了迷走神经上升纤维的重要性,这是将生理唤起对大脑系统进行外围唤醒的重要途径,这些后果将新信息编码到记忆存储中。

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