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Forebrain contribution to the induction of a cellular correlate of conditioned taste aversion in the nucleus of the solitary tract

机译:前脑对孤立道核中条件性味觉厌恶的细胞相关性的诱导的贡献

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摘要

A conditioned taste aversion (CTA) is a form of classical conditioning in which animals avoid a taste (conditioned stimulus; CS) which has been previously paired with a treatment (unconditioned stimulus; US) that produces transient illness. Recently, a reliable cellular correlate of the behavioral expression of a CTA was identified using c- Fos immunostaining as a marker of neuronal activation. Exposure to a saccharin solution (CS) which had previously been paired with lithium chloride (LiCl; US) induced significant c-Fos-like immunoreactivity (c- FLI) in the intermediate zone of the nucleus of the solitary tract (NTS), a response that was quite similar to that displayed following administration of LiCl alone. The present studies employed a variant of the chronic decerebrate rat preparation to explore whether circuitry intrinsic to the brainstem is sufficient for the induction of c-FLI in both as an unconditioned response to the LiCl and as a conditioned response to the saccharin. Using chronic hemidecerebrate rats, which have a unilateral brain transection at the level of the superior colliculus, we found that the unconditioned c-FLI to LiCI was unaltered by the transection, while the conditioned expression of c-FLI to the CS taste was evident only on the side of the NTS which retained neural connections with the forebrain. These findings strongly implicate forebrain input in this cellular correlate of CTA learning and also indicate that the pathways mediating the response to the US (LiCl) and the CS (saccharin) differ.
机译:有条件的味觉厌恶(CTA)是经典条件的一种形式,其中动物避免了先前已与会产生短暂疾病的治疗(无条件的刺激; US)配对的味道(有条件的刺激; CS)。最近,使用c-Fos免疫染色作为神经元激活的标志物,确定了CTA行为表达的可靠细胞相关性。暴露于先前与氯化锂(LiCl; US)配对的糖精溶液(CS),会在孤立道(NTS)的中间核区产生明显的c-Fos样免疫反应(c-FLI)。响应与仅施用LiCl后显示的响应非常相似。本研究采用了一种慢性去脑大鼠制剂的变体,以探究脑干固有的电路是否足以诱导c-FLI,无论是对LiCl的无条件反应还是对糖精的条件反应。使用在上丘水平单侧脑横断的慢性半脑大鼠,我们发现该横断未改变无条件的c-FLI对LiCI的表达,而仅对c-FLI对CS味的条件表达才明显在NTS一侧,与前脑保持神经连接。这些发现强烈暗示前脑输入在CTA学习的这种细胞相关性中,也表明介导对US(LiCl)和CS(糖精)的应答的途径不同。

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