Chiu Yu-Chin, Yantis Steven
Department of Psychological and Brain Sciences, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Neurosci. 2009 Mar 25;29(12):3930-8. doi: 10.1523/JNEUROSCI.5737-08.2009.
To optimize task performance as circumstances unfold, cognitive control mechanisms configure the brain to prepare for upcoming events through voluntary shifts in task set. A foundational unanswered question concerns whether different domains of cognitive control (e.g., spatial attention shifts, shifts between categorization rules, or shifts between stimulus-response mapping rules) are associated with separate, domain-specific control mechanisms, or whether a common, domain-independent source of control initiates shifts in all domains. Previous studies have tested different domains of cognitive control in separate groups of subjects using different paradigms, yielding equivocal conclusions. Here, using rapid event-related MRI, we report evidence from a single paradigm in which subjects were cued to perform both shifts of spatial attention and switches between categorization rules. A conjunction analysis revealed a common transient signal evoked by switch cues in medial superior parietal lobule for both domains of control, revealing a single domain-independent control mechanism.
为了在各种情况不断变化时优化任务表现,认知控制机制会通过任务集的自愿转换来配置大脑,为即将发生的事件做好准备。一个尚未得到解答的基本问题是,认知控制的不同领域(例如,空间注意力转移、分类规则之间的转换或刺激-反应映射规则之间的转换)是否与单独的、特定领域的控制机制相关联,或者是否存在一个通用的、与领域无关的控制源在所有领域引发转换。以前的研究在不同的受试者组中使用不同的范式测试了认知控制的不同领域,得出了模棱两可的结论。在这里,我们使用快速事件相关磁共振成像,报告了来自单一范式的证据,在该范式中,受试者被提示既要进行空间注意力的转移,也要在分类规则之间进行切换。联合分析揭示了内侧顶上小叶中由两种控制领域的切换提示共同诱发的一个短暂信号,揭示了一种单一的、与领域无关的控制机制。