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首页> 外文期刊>American Journal of Physiology >Licking and gaping elicited by microstimulation of the nucleus of the solitary tract
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Licking and gaping elicited by microstimulation of the nucleus of the solitary tract

机译:微刺激孤立道核引起的舔and和缝隙

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摘要

First published May 21, 2008; doi:10.1152/ajpregu.00189.2008.-Intraoral infusions of bitter tastants activate expression of the immediate-early gene c-Fos in neurons located in the medial third of the rostral nucleus of the solitary tract (rNST). The distribution of these neurons is distinct from that activated by sour or sweet stimuli. Bitter stimuli are also distinctive because of their potency for eliciting gaping, an oral reflex that functions to actively reject potentially toxic substances. Glossopharyngeal nerve transection profoundly reduces, whereas decerebration spares, the bitter-evoked Fos-like immunoreactivity (FLI) pattern and gaping, implicating the medial rNST as a substrate for the sensory limb of oral rejection. The present experiment tested this hypothesis using microstimulation (100 Hz, 0.2 ms, 5-40 muA) to activate the rNST in awake rats. NST microstimulation elicited licking and gaping, and gaping was evoked from a restricted rNST region. The results indicated some topographic organization in sites effective for evoking gaping, but, in direct conflict with the hypothesis, lateral sites farther from bitter-evoked FLI were more effective than medial sites centered closer to FLI-expressing neurons. The gape-effective sites resemble locations of bitter-responsive neurons recently observed in neurophys-iological recordings. These results indicate that bitter-responsive rNST neurons critical for triggering gaping may not express FLI and imply an alternate function for bitter-responsive neurons that do.
机译:首次发布于2008年5月21日; doi:10.1152 / ajpregu.00189.2008.-苦味剂的口腔内注射激活了位于孤立道延髓核内侧(rNST)内侧三分之一的神经元中即早基因c-Fos的表达。这些神经元的分布不同于酸或甜刺激所激活的分布。苦味刺激物也很独特,因为它们能引起拉开间隙,一种口腔反射作用,可主动排斥潜在的有毒物质。舌咽神经横切大大减少,而去脑则省去了苦味的Fos样免疫反应(FLI)模式和拉开间隙,这意味着内侧rNST可以作为口腔排斥反应的感觉肢体的底物。本实验使用微刺激(100 Hz,0.2 ms,5-40 muA)激活清醒大鼠中的rNST,测试了该假设。 NST微刺激引起舔and和张开,从限制的rNST区域引起张开。结果表明,在有效激发间隙的部位存在一些地形组织,但与假说直接冲突的是,离苦涩诱发的FLI较远的外侧部位比靠近FLI表达神经元的内侧部位更有效。缺口有效位点类似于最近在神经生理学记录中观察到的苦味反应神经元的位置。这些结果表明,对触发空腹至关重要的苦味反应性rNST神经元可能不表达FLI,这意味着苦味反应性神经元具有替代功能。

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