首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dynamic coding of goal-directed paths by orbital prefrontal cortex.
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Dynamic coding of goal-directed paths by orbital prefrontal cortex.

机译:通过眶前额叶皮层对目标指向的路径进行动态编码。

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摘要

Adapting successfully to new situations relies on integrating memory of similar circumstances with the outcomes of past actions. Here, we tested how reward history and recent memory influenced coding by orbital prefrontal cortex (OFC) neurons. Rats were trained to find food in plus maze tasks that required both the OFC and the hippocampus, and unit activity was recorded during stable performance, reversal learning, and strategy switching. OFC firing distinguished different rewarded paths, journeys from a start arm to a goal arm. Activity of individual cells and the population correlated with performance as rats learned newly rewarded outcomes. Activity was similar during reversal, an OFC-dependent task, and strategy switching, an OFC-independent task, suggesting that OFC associates information about paths and outcomes both when it is required for performance and when it is not. Path-selective OFC cells fired differently during overlapping journeys that led to different goals or from different starts, resembling journey-dependent coding by hippocampal neurons. Local field potentials (LFPs) recorded simultaneously in the OFC and the hippocampus oscillated coherently in the theta band (5-12 Hz) during stable performance. LFP coherence diminished when rats adapted to altered reward contingencies and followed different paths. Thus, OFC neurons appear to participate in a distributed network including the hippocampus that associates spatial paths, recent memory, and integrated reward history.
机译:成功适应新情况取决于将类似情况的记忆与过去行动的结果相结合。在这里,我们测试了奖励历史和最近的记忆如何影响眶前额叶皮层(OFC)神经元的编码。训练大鼠在需要OFC和海马的迷宫任务中寻找食物,并在稳定表现,逆向学习和策略转换期间记录单位活动。 OFC射击区分了不同的奖励路径,从起点到目标的旅程。随着大鼠学习新的成果,个体细胞和种群的活动与表现相关。在反转过程中,活动是相似的,这是一项与OFC相关的任务,而策略转换是一项与OFC相关的任务,这表明OFC在需要和不需要性能时都将有关路径和结果的信息相关联。在导致不同目标或不同起点的重叠旅程中,路径选择性OFC细胞的发射方式不同,类似于海马神经元的旅程依赖性编码。在稳定运行期间,同时记录在OFC和海马中的局部场电势(LFP)在theta波段(5-12 Hz)中相干振荡。当大鼠适应改变的奖励意外情况并遵循不同的路径时,LFP​​的连贯性减弱。因此,OFC神经元似乎参与了包括海马体在内的分布式网络,该海马体将空间路径,近期记忆和整合的奖励历史联系起来。

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