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Flexible neural mechanisms of cognitive control within human prefrontal cortex

机译:人体前额叶皮层内认知控制的灵活神经机制

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A major challenge in research on executive control is to reveal its functional decomposition into underlying neural mechanisms. A typical assumption is that this decomposition occurs solely through anatomically based dissociations. Here we tested an alternative hypothesis that different cognitive control processes may be implemented within the same brain regions, with fractionation and dissociation occurring on the basis of temporal dynamics. Regions within lateral prefrontal cortex (PFC) were examined that, in a prior study, exhibited contrasting temporal dynamics between older and younger adults during performance of the AX-CPT cognitive control task. The temporal dynamics in younger adults fit a proactive control pattern (primarily cue-based activation), whereas in older adults a reactive control pattern was found (primarily probe-based activation). In the current study, we found that following a period of task-strategy training, these older adults exhibited a proactive shift within a subset of the PFC regions, normalizing their activity dynamics toward young adult patterns. Conversely, under conditions of penalty-based monetary incentives, the younger adults exhibited a reactive shift some of the same regions, altering their temporal dynamics toward the older adult baseline pattern. These experimentally induced crossover patterns of temporal dynamics provide strong support for dual modes of cognitive control that can be flexibly shifted within PFC regions, via modulation of neural responses to changing task conditions or behavioral goals.
机译:执行控制研究的一个主要挑战是将其功能分解为潜在的神经机制。一个典型的假设是,这种分解仅通过基于解剖的分解发生。在这里,我们测试了另一种假设,即在相同的大脑区域内可能实现不同的认知控制过程,并且根据时间动态发生分级和解离。在先前的研究中,检查了外侧前额叶皮层(PFC)内的区域,这些区域在执行AX-CPT认知控制任务期间表现出年龄较大和较年轻的成年人之间时空动态的对比。年轻人的时间动态符合主动控制模式(主要是基于提示的激活),而成年人则具有反应性控制模式(主要基于探针的激活)。在当前的研究中,我们发现经过一段时间的任务策略培训后,这些老年人在PFC区域的一部分内表现出了积极的转变,使他们的活动动态朝着年轻人的方向发展。相反,在基于罚金的金钱激励条件下,年轻人在某些相同区域表现出反应性转变,从而朝着老年人基线模式改变了他们的时间动态。这些实验诱导的时间动态交叉模式为认知控制的双重模式提供了有力的支持,通过调节对变化的工作条件或行为目标的神经反应,可以在PFC区域内灵活地转换认知控制的双重模式。

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