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Theta-activity in anterior cingulate cortex predicts task rules and their adjustments following errors

机译:前扣带回皮层中的θ活动预测任务规则及其在错误后的调整

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Accomplishing even simple tasks depend on neuronal circuits to configure how incoming sensory stimuli map onto responses. Controlling these stimulus-response (SR) mapping rules relies on a cognitive control network comprising the anterior cingulate cortex (ACC). Single neurons within the ACC convey information about currently relevant SR mapping rules and signal unexpected action outcomes, which can be used to optimize behavioral choices. However, its functional significance and the mechanistic means of interaction with other nodes of the cognitive control network remain elusive and poorly understood. Here, we report that core aspects of cognitive control are encoded by rhythmic theta-band activity within neuronal circuits in the ACC. Throughout task performance, theta-activity predicted which of two SR mapping rules will be established before processing visual target information. Task-selective theta-activity emerged particularly early during those trials, which required the adjustment of SR rules following an erroneous rule representation in the preceding trial. These findings demonstrate a functional correlation of cognitive control processes and oscillatory theta-band activity in macaque ACC Moreover, we report that spike output of a subset of cells in ACC is synchronized to predictive theta-activity, suggesting that the theta-cycle could serve as a temporal reference for coordinating local task selective computations across a larger network of frontal areas and the hippocampus to optimize and adjust the processing routes of sensory and motor circuits to achieve efficient sensory-motor control.
机译:要完成甚至简单的任务,都取决于神经元电路来配置传入的感觉刺激如何映射到响应上。控制这些刺激-反应(SR)映射规则依赖于包括前扣带回皮层(ACC)的认知控制网络。 ACC中的单个神经元传达有关当前相关SR映射规则的信息,并发出意想不到的动作结果,这些信息可用于优化行为选择。但是,其功能意义和与认知控制网络其他节点的交互作用的机械方式仍然难以捉摸,并且了解甚少。在这里,我们报告认知控制的核心方面是由ACC中神经元回路内的节律性θ带活动编码的。在整个任务执行过程中,θ活动预测了在处理视觉目标信息之前将建立两个SR映射规则中的哪一个。在这些试验中,任务选择型theta活动特别早就出现了,这需要根据先前试验中错误的规则表示来调整SR规则。这些发现证明了猕猴ACC中认知控制过程和振荡theta带活动的功能相关性。此外,我们报告说ACC中细胞子集的峰值输出与预测的theta活动同步,这表明theta循环可以作为一个时间参考,用于协调较大面积的额叶和海马网络中的局部任务选择性计算,以优化和调整感觉和运动电路的处理路径,以实现有效的感觉运动控制。

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