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首页> 外文期刊>Learning & memory >Differential effects of muscarinic receptor blockade in prelimbic cortex on acquisition and memory formation of an odor-reward task
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Differential effects of muscarinic receptor blockade in prelimbic cortex on acquisition and memory formation of an odor-reward task

机译:毒蕈碱受体在前肢皮层中的阻滞对气味奖励任务的获得和记忆形成的不同作用

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摘要

The present experiments determined the consequences of blocking muscarinic cholinergic receptors of the prelimbic ( PL) cortex in the acquisition and retention of an odor-reward associative task. Rats underwent a training test (five trials) and a 24-h retention test ( two retention trials and two relearning trials). In the first experiment, rats were bilaterally infused with scopolamine (20 or 5 mu g/site) prior to training. Although scopolamine rats showed acquisition equivalent to PBS-injected controls, they exhibited weakened performance in the 24-h retention test measured by number of errors. In the second experiment, rats were injected with scopolamine ( 20 mu g/site) immediately or 1 h after training and tested 24 h later. Scopolamine rats injected immediately showed severe amnesia detected in two performance measures ( errors and latencies), demonstrating deficits in retention and relearning, whereas those injected 1 h later showed good 24-h test performance, similar to controls. These results suggest that muscarinic transmission in the PL cortex is essential for early memory formation, but not for acquisition, of a rapidly learned odor discrimination task. Findings corroborate the role of acetylcholine in consolidation processes and the participation of muscarinic receptors in olfactory associative tasks.
机译:本实验确定了在获取和保留气味奖励相关任务中阻断前肢(PL)皮层的毒蕈碱胆碱能受体的后果。大鼠接受了训练试验(五项试验)和24小时保留试验(两项保留试验和两项再学习试验)。在第一个实验中,训练前先向大鼠双侧注射东pol碱(20或5μg /位)。尽管东pol碱大鼠表现出与注射PBS的对照组相当的采集能力,但它们在24小时保留测试中表现出的弱点是通过错误次数来衡量的。在第二个实验中,立即或在训练后1小时给大鼠注射东pol碱(20微克/部位),并在24小时后进行测试。立即注射的东amine碱大鼠表现出两种表现指标(错误和潜伏期)中检测到的严重健忘症,表明retention留和再学习方面存在缺陷,而在1小时后注射的大鼠表现出良好的24小时测试表现,与对照组相似。这些结果表明,PL皮层中的毒蕈碱传播对于快速记忆的气味识别任务的早期记忆形成(而非获取)至关重要。这些发现证实了乙酰胆碱在巩固过程中的作用以及毒蕈碱受体在嗅觉联想任务中的参与。

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