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The rat retrosplenial cortex as a link for frontal functions: a lesion analysis

机译:大鼠脾后皮质作为额叶功能的链接:病变分析

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摘要

Cohorts of rats with excitotoxic retrosplenial cortex lesions were tested on four behavioural tasks sensitive to dysfunctions in prelimbic cortex, anterior cingulate cortex, or both. In this way the study tested whether retrosplenial cortex has nonspatial functions that reflect its anatomical interactions with these frontal cortical areas. In Experiment 1, retrosplenial cortex lesions had no apparent effect on a set-shifting digging task that taxed intradimensional and extradimensional attention, as well as reversal learning. Likewise, retrosplenial cortex lesions did not impair a strategy shift task in an automated chamber, which involved switching from visual-based to response-based discriminations and, again, included a reversal (Experiment 2). Indeed, there was evidence that the retrosplenial lesions aided the initial switch to response-based selection. No lesion deficit was found on an automated cost-benefit task that pitted size of reward against effort to achieve that reward (Experiment 3). Finally, while retrosplenial cortex lesions affected matching-to-place task in a T-maze, the profile of deficits differed from that associated with prelimbic cortex damage (Experiment 4). When the task was switched to a nonmatching design, retrosplenial cortex lesions had no apparent effect on performance. The results from the four experiments show that many frontal tasks do not require the retrosplenial cortex, highlighting the specificity of their functional interactions. The results show how retrosplenial cortex lesions spare those learning tasks in which there is no mismatch between the internal and external representations used to guide behavioural choice. In addition, these experiments further highlight the importance of the retrosplenial cortex in solving tasks with a spatial component.
机译:对兴奋性中毒性后脾皮层病变的大鼠队列进行了四项对前肢皮层,前扣带回皮层或这两种功能异常敏感的行为任务的测试。通过这种方式,研究测试了后脾皮质是否具有非空间功能,以反映其与这些额叶皮层区域的解剖相互作用。在实验1中,脾后皮质皮损对固定转移的挖掘任务没有明显影响,该任务增加了对维度内和维度外注意力以及反向学习的负担。同样,脾后皮质病变也不会损害自动室中的策略转换任务,该任务涉及从基于视觉的识别切换为基于响应的识别,并且再次包括逆转(实验2)。确实,有证据表明,脾后病变有助于初始转换为基于反应的选择。在自动成本效益任务中未发现病变缺陷,该任务将奖励的规模与为实现该奖励而付出的努力进行了对比(实验3)。最后,虽然脾后皮质皮损在T形迷宫中影响到匹配任务,但缺陷的轮廓与前肢皮质损伤相关(实验4)。当任务切换到不匹配的设计时,脾后皮质损伤对性能没有明显影响。四个实验的结果表明,许多额叶任务不需要脾后皮质,突显了它们功能相互作用的特异性。结果显示,脾后皮质皮损如何避免那些用于指导行为选择的内部和外部表征之间没有错配的学习任务。此外,这些实验进一步强调了脾后皮质在解决具有空间成分的任务中的重要性。

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