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首页> 外文期刊>Experimental Brain Research >Neuronal representation of task performance in the medial frontal cortex undergoes dynamic alterations dependent upon the demand for volitional control of action.
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Neuronal representation of task performance in the medial frontal cortex undergoes dynamic alterations dependent upon the demand for volitional control of action.

机译:额叶内侧皮质中任务执行的神经元表现根据对行为的自愿控制的需求而发生动态变化。

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摘要

Neural network contributing to forelimb task performance in the frontal cortex is dynamically reorganized by the necessity for volitional control of action. Neurons in the posterior medial prefrontal cortex (pmPFC) exhibit clear activity modulation when monkeys volitionally select the correct response tactic from multiple choices, but such activity disappears if selection of a tactic is unnecessary. Prompted by these results, we studied how the requirement to select an appropriate tactic affects the neural representation of action in downstream cortical areas. Two monkeys performed a spatial arm-reaching task with either left or right targets. The task required the monkeys to reach either toward (concordant trials) or away from (discordant trials) an illuminated target. Under the dual-tactic condition, concordant and discordant trials were randomly intermixed, requiring the selection of a response tactic. Under the single-tactic condition, only concordant trials were presented, allowing the monkeys to use the same tactic. Neurons in the pmPFC exhibited clear activity related to task performance under the former condition, but such activity disappeared under the latter condition. In contrast, neurons related to task performance were present under both conditions in supplementary motor area (SMA) and presupplementary motor area (pre-SMA). However, the efficacy of action representation by SMA but not pre-SMA neurons dramatically improved under the single-tactic condition. These results suggest that selection of the appropriate response tactic reorganizes neural circuits in specific motor areas in the medial frontal cortex, in addition to the pmPFC.
机译:通过主动控制动作的必要性,动态重组了有助于额叶前额任务执行的神经网络。当猴子从多项选择中自愿选择正确的反应策略时,后内侧前额叶皮层(pmPFC)中的神经元表现出明显的活性调节,但是如果不需要选择策略,这种活动就会消失。这些结果的提示,我们研究了选择合适策略的要求如何影响下游皮层区域的神经动作表现。两只猴子用左或右目标执行了空间伸臂任务。该任务要求猴子达到(照耀试验)或远离(照耀试验)光照目标。在双重策略条件下,对等与不对等试验随机混合,需要选择一种应对策略。在单策略条件下,仅进行一致的试验,允许猴子使用相同的策略。在前一种情况下,pmPFC中的神经元表现出与任务执行相关的清晰活动,但在后一种情况下这种活动消失了。相反,在补充运动区(SMA)和补充运动区(pre-SMA)的两种情况下均存在与任务执行相关的神经元。然而,在单策略条件下,由SMA而非SMA前神经元代表动作的功效显着提高。这些结果表明,除了pmPFC之外,选择适当的反应策略还可以重组内侧额叶皮层特定运动区域的神经回路。

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