Powell Nathaniel J, Redish A David
Graduate Program in Neuroscience, University of Minnesota Minneapolis, MN, USA.
Department of Neuroscience, University of Minnesota Minneapolis, MN, USA.
Front Behav Neurosci. 2014 Apr 23;8:120. doi: 10.3389/fnbeh.2014.00120. eCollection 2014.
The rodent prelimbic cortex has been shown to play an important role in cognitive processing, and has been implicated in encoding many different parameters relevant to solving decision-making tasks. However, it is not known how the prelimbic cortex represents all these disparate variables, and if they are simultaneously represented when the task requires it. In order to investigate this question, we trained rats to run the Multiple-T Left Right Alternate (MT-LRA) task and recorded multi-unit ensembles from their prelimbic regions. Significant populations of cells in the prelimbic cortex represented the strategy controlling reward receipt on a given lap, whether the animal chose to go right or left on a given lap, and whether the animal made a correct decision or an error on a given lap. These populations overlapped in the cells recorded, with several cells demonstrating differential firing to all three variables. The spatial and strategic firing patterns of individual prelimbic cells were highly conserved across several days of running this task, indicating that each cell encoded the same information across days.
啮齿动物的前边缘皮层已被证明在认知加工中发挥重要作用,并与编码许多与解决决策任务相关的不同参数有关。然而,尚不清楚前边缘皮层如何表征所有这些不同的变量,以及在任务需要时它们是否同时被表征。为了研究这个问题,我们训练大鼠执行多T左右交替(MT-LRA)任务,并记录它们前边缘区域的多单元集群。前边缘皮层中有大量细胞表征了控制给定圈次奖励获取的策略、动物在给定圈次选择向右还是向左以及动物在给定圈次做出的是正确决策还是错误决策。这些细胞群体在记录的细胞中存在重叠,有几个细胞对所有这三个变量都表现出不同的放电。在执行该任务的几天时间里,单个前边缘细胞的空间和策略性放电模式高度保守,这表明每个细胞在不同日期编码相同的信息。