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首页> 外文期刊>Journal of Cognitive Neuroscience >The Role of the Lateral Prefrontal Cortex and Anterior Cingulate in Stimulus-Response Association Reversals
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The Role of the Lateral Prefrontal Cortex and Anterior Cingulate in Stimulus-Response Association Reversals

机译:外侧前额叶皮层和前扣带在刺激反应协会逆转中的作用。

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Many complex tasks require us to flexibly switch between behavioral rules, associations, and strategies. The prefrontal cerebral cortex is thought to be critical to the performance of such behaviors, although the relative contribution of different components of this structure and associated subcortical regions are not fully understood. We used functional magnetic resonance imaging to measure brain activity during a simple task which required repeated reversals of a rule linking a colored cue and a left/right motor response. Each trial comprised three discrete events separated by variable delay periods. A colored cue instructed which response was to be executed, followed by a go signal which told the subject to execute the response and a feedback instruction which indicated whether to "hold" or "flip" the rule linking the colored cue and response. The design allowed us to determine which brain regions were recruited by the specific demands of preparing a rule contingent motor response, executing such a response, evaluating the significance of the feedback, and reconfiguring stimulus-response (SR) associations. The results indicate that an increase in neural activity occurs within the anterior cingulate gyrus under conditions in which SR associations are labile. In contrast, lateral frontal regions are activated by unlikely/unexpected perceptual events regardless of their significance for behavior. A network of subcortical structures, including the mediodorsal nucleus of the thalamus and striatum were the only regions showing activity that was exclusively correlated with the neurocognitive demands of reversing SR associations. We conclude that lateral frontal regions act to evaluate the behavioral significance of perceptual events, whereas medial frontal-thalamic circuits are involved in monitoring and reconfiguring SR associations when
机译:许多复杂的任务要求我们在行为规则,关联和策略之间灵活切换。尽管尚未完全了解这种结构的不同组成部分和相关的皮层下区域的相对作用,但前额叶大脑皮层对这种行为的表现至关重要。我们使用功能磁共振成像来测量一项简单任务期间的大脑活动,该任务需要反复逆转将彩色提示与左右运动响应联系起来的规则。每个试验包括三个离散事件,每个事件由可变的延迟周期分隔。彩色提示指示要执行哪个响应,然后是发出信号,告诉受试者执行该响应,以及指示是否“保持”或“翻转”链接彩色提示和响应的规则的执行信号。该设计使我们能够通过准备规则或然运动反应,执行这种反应,评估反馈的重要性以及重新配置刺激反应(SR)关联的特定需求来确定要招募哪些大脑区域。结果表明,在SR关联不稳定的条件下,前扣带回内神经活动增加。相比之下,外侧额叶区域被不太可能/意外的知觉事件激活,无论其对行为的重要性如何。皮层下结构网络,包括丘脑和纹状体的中嗅核,是唯一显示出与逆转SR关联的神经认知需求完全相关的活动的区域。我们得出结论,外侧额叶区域起着评估知觉事件的行为意义的作用,而内侧额叶-丘脑回路在监测和重新配置SR关联时参与

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