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首页> 外文期刊>Chemical Senses >The Number and Location of Fos-like Immunoreactive Neurons in the Central Gustatory System Following Electrical Stimulation of the Parabrachial Nucleus in Conscious Rats
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The Number and Location of Fos-like Immunoreactive Neurons in the Central Gustatory System Following Electrical Stimulation of the Parabrachial Nucleus in Conscious Rats

机译:电刺激意识大鼠的臂旁旁核后中央消化系统中Fos样免疫反应性神经元的数量和位置

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摘要

Electrical stimulation of the waist area (W) of the parabrachial nucleus (PBN) in conscious rats elicits stereotypical oromotor behaviors (Galvin et al. 2004). To identify neurons possibly involved in these behavioral responses, we used Fos immunohistochemistry to locate populations of neurons within central gustatory and oromotor centers activated by PBN stimulation. Dramatic increases in the numbers of Fos-like immunoreactive neurons were observed in the ipsilateral PBN, nucleus of the solitary tract (NST), and central amygdala. The increase in neurally-activated cells within the ventral subdivision (V) of the rostral NST is particularly noteworthy because of its projections to medullary oromotor centers. A modest increase in labeled neurons occurred bilaterally within the gustatory cortex. Although there were trends for an increase in Fos-labeled neurons in the gustatory thalamus and medullary reticular formation, most changes in labeled neurons in these areas were not statistically significant. Linear regression analysis revealed a relationship between the number of taste reactivity (TR) behaviors performed during PBN stimulation and the number of Fos-like immunoreactive neurons in the caudal PBN and V of the rostral NST. These data support a role for neurons in W of the PBN and the ventral rostral NST in the initiation of TR behaviors.
机译:在有意识的大鼠中,电刺激臂旁臂旁核(PBN)的腰部区域(W)引起刻板的口述动作行为(Galvin et al。2004)。为了确定可能与这些行为反应有关的神经元,我们使用了Fos免疫组织化学法来定位由PBN刺激激活的中央味觉中心和口运动中心内的神经元群体。在同侧PBN,孤立道(NST)核和杏仁中央核中观察到Fos样免疫反应性神经元数量的急剧增加。特别值得一提的是,在延髓鼻端腹侧(V)腹侧细分(V)内神经激活细胞的增加,因为它投射到了髓性运动运动中心。味觉皮质中双侧发生标记神经元的适度增加。尽管在味觉丘脑和延髓网状结构中Fos标记的神经元有增加的趋势,但这些区域中标记的神经元的大多数变化在统计学上均无统计学意义。线性回归分析揭示了在PBN刺激期间执行的味觉反应(TR)行为的数量与尾侧PBN和VST鼻侧V的Fos样免疫反应神经元的数量之间的关系。这些数据支持了神经元在PBN的W和腹侧鸟嘴NST在启动TR行为中的作用。

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