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Prefrontal electroencephalographic activity during the working memory processes involved in a sexually motivated task in male rats

机译:雄性大鼠性动机工作涉及的工作记忆过程中的前额叶脑电图活动

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The prefrontal cortex is involved in working memory functions, and several studies using food or drink as rewards have demonstrated that the rat is capable of performing tasks that involve working memory. Sexual activity is another highly-rewarding, motivated behaviour that has proven to be an efficient incentive in classical operant tasks. The objective of this study was to determine whether the functional activity of the medial prefrontal cortex (mPFC) changes in relation to the working memory processes involved in a sexually motivated task performed in male rats. Thus, male Wistar rats implanted in the mPFC were subjected to a nonmatching-to-sample task in a T-maze using sexual interaction as a reinforcer during a 4-day training period. On the basis of their performance during training, the rats were classified as 'good-learners' or 'bad-learners'. Only the good-learner rats showed an increase in the absolute power of the 8-13 Hz band during both the sample and test runs; a finding that could be related to learning of the working memory elements entailed in the task. During the maintenance phase only (i.e., once the rule had been learned well), the good-learner rats also showed an increased correlation of the 8-13 Hz band during the sample run, indicating that a high degree of coupling between the prefrontal cortices is necessary for the processing required to allow the rats to make correct decisions in the maintenance phase. Taken together, these data show that mPFC activity changes in relation to the working memory processes involved in a sexually motivated task in male rats.
机译:前额叶皮层参与工作记忆功能,一些使用食物或饮料作为奖励的研究表明,大鼠能够执行涉及工作记忆的任务。性活动是另一种高度奖励的动机行为,已被证明是经典操作任务中的一种有效动机。这项研究的目的是确定内侧前额叶皮层(mPFC)的功能活动是否与参与雄性大鼠性动机的工作记忆过程有关。因此,在4天的训练期间,使用性相互作用作为增强剂,将植入mPFC的雄性Wistar大鼠置于T型迷宫中,进行不匹配的样品任务。根据训练过程中的表现,将大鼠分为“好学习者”或“坏学习者”。在样品运行和测试运行中,只有学习能力好的大鼠显示8-13 Hz频带的绝对功率增加;一个与学习任务中需要的工作记忆元素有关的发现。仅在维护阶段(即,一旦已经很好地了解了规则),学习能力好的大鼠在样品运行期间还显示出8-13 Hz频段的相关性增加,表明前额叶皮层之间的高度耦合是必需的,以便老鼠能够在维持阶段做出正确的决定。综上所述,这些数据表明,mPFC活性与雄性大鼠性动机相关的工作记忆过程有关。

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