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Cue-evoked encoding of movement planning and execution in the rat nucleus accumbens

机译:提示诱发伏伏大鼠核运动计划和执行的编码

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摘要

The nucleus accumbens is involved in the modulation of motivated behaviour by reward-associated sensory information. However, little is known about the specific nature of the nucleus accumbens' contribution to generating movement. We investigated motor encoding by nucleus accumbens neurons in rats performing a delayed response task that allowed us to dissociate the effects of sensory and motor events on firing. In a subset of neurons, firing in the delay period preceding movement was highly selective; this selectivity was tightly correlated with the direction of the subsequent movement, but not with the sensory properties of the instructive cue. Direction selectivity in this population of neurons developed over the course of the delay period, with the strongest selectivity apparent just prior to movement onset. Selectivity was also apparent in nucleus accumbens neurons during movement, such that firing showed a tight correlation with movement direction, but not the instructive cue presented nor the spatial destination of the movement. These results are consistent with the hypothesis that a subpopulation of nucleus accumbens neurons contributes to the selection and execution of specific motivated behaviours.
机译:伏伏核通过奖励相关的感觉信息参与动机行为的调节。但是,对于伏伏核对产生运动的贡献的特定性质知之甚少。我们调查了大鼠伏伏核神经元在执行延迟反应任务中的运动编码,这使我们能够分离感觉和运动事件对射击的影响。在神经元的一个子集中,在运动前的延迟时间内激发是高度选择性的。这种选择性与随后运动的方向紧密相关,但与指示性提示的感官特性不相关。该神经元群体的方向选择性是在延迟期间内发展的,在运动开始之前,选择性最强。运动过程中伏伏核神经元的选择性也很明显,因此发射与运动方向紧密相关,但没有提示性提示,也没有运动的空间目的地。这些结果与假伏伏核神经元亚群有助于特定动机行为的选择和执行的假设相一致。

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