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Coding for spatial goals in the prelimbic/ infralimbic area of the rat frontal cortex

机译:大鼠额叶皮质前缘/下缘区域的空间目标编码

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Finding one's way in space requires a distributed neural network to support accurate spatial navigation. In the rat, this network likely includes the hippocampus and its place cells. Although such cells allow the organism to locate itself in the environment, an additional mechanism is required to specify the animal's goal. Here, we show that firing activity of neurons in medial prefrontal cortex (mPFC) reflects the motivational salience of places. We recorded mPFC neurons from rats performing a place navigation task, and found that a substantial proportion of cells in the prelimbic infralimbic area had place fields. A much smaller proportion of cells with such properties was found in the dorsal anterior cingulate area. Furthermore, the distribution of place fields in prelimbic infralimbic cells was not homogeneous: goal locations were overrepresented. Because such locations were spatially dissociated from rewards, we suggest that mPFC neurons might be responsible for encoding the rat's goals, a process necessary for path planning.
机译:在太空中寻找自己的道路需要分布式神经网络来支持准确的空间导航。在大鼠中,该网络可能包括海马及其位置细胞。尽管此类细胞允许生物体将自身定位在环境中,但仍需要其他机制来指定动物的目标。在这里,我们显示内侧前额叶皮层(mPFC)中神经元的放电活动反映了地方的动机显着性。我们记录了执行位置导航任务的大鼠的mPFC神经元,发现前边缘下缘区域中有相当一部分细胞具有位置场。在背扣带前区域发现具有这种特性的细胞比例要小得多。此外,前缘下缘细胞中的位置场分布不均匀:目标位置被过度代表。由于这些位置在空间上与奖励无关,因此我们建议mPFC神经元可能负责编码大鼠的目标,这是路径规划所必需的过程。

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