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首页> 外文期刊>Journal of Cognitive Neuroscience >Neural Mechanisms Underlying Adaptive Actions after Slips
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Neural Mechanisms Underlying Adaptive Actions after Slips

机译:滑倒后适应作用的神经机制

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摘要

An increase in cognitive control has been systematically observed in responses produced immediately after the commission of an error. Such responses show a delay in reaction time (post-error slowing) and an increase in accuracy. To characterize the neurophysiological mechanism involved in the adaptation of cognitive control, we examined oscillatory electrical brain activity by electroencephalogram and its corresponding neural network by event-related functional magnetic resonance imaging in three experiments. We identified a new oscillatory theta-beta component related to the degree of post-error slowing in the correct responses following an erroneous trial. Additionally, we found that the activity of the right dorsolateral prefrontal cortex, the right inferior frontal cortex, and the right superior frontal cortex was correlated with the degree of caution shown in the trial following the. commission of an error. Given the overlap between this brain network and the regions activated by the need to inhibit motor responses in a stop-signal manipulation, we conclude that the increase in cognitive control observed after the commission of an error is implemented through the participation of an inhibitory mechanism.
机译:错误发生后立即在反应中系统地观察到认知控制的增强。这样的响应显示出反应时间的延迟(错误后变慢)和准确性的提高。为了表征参与认知控制的神经生理机制,我们在三个实验中通过脑电图检查了振荡性脑电活动,并通过事件相关功能磁共振成像检查了其相应的神经网络。我们确定了一个新的振荡theta-beta组件,该组件与错误试验后正确响应中的错误后放慢程度有关。此外,我们发现右后外侧前额叶皮层,右下额叶皮层和右上额叶皮层的活动与随后试验中显示的谨慎程度相关。发生错误。给定此大脑网络与停止信号操作中需要抑制运动反应而激活的区域之间的重叠,我们得出结论,错误的发生后观察到的认知控制的提高是通过抑制机制的参与实现的。

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