Sala Joseph B, Courtney Susan M
Psychology Department, Stanford University, Stanford, CA, USA.
Cortex. 2007 Jan;43(1):5-21. doi: 10.1016/s0010-9452(08)70442-8.
Prefrontal cortex (PFC) supports the maintenance of currently relevant information in working memory (WM). How the PFC is organized for the maintenance of disparate information, how this information is conjoined into a unified whole, and how the representation may change with task demands is still debated. The pattern of neural activity during maintenance of either abstract visual patterns, locations, or their "conjunction" was measured in two experiments using functional magnetic resonance imaging (fMRI). During delays, common regions in PFC were active, but a dorsal-ventral/spatial-nonspatial functional topography distinguished among the three delay types. During conjunction delays, no additional neural architecture was recruited. Instead, conjunction delays were characterized by a significant reduction compared to the response of that cortical region while maintaining its "preferred" information. A model is presented, extending the principles of "biased competition" to the PFC and the dynamic maintenance of information in WM, that accounts for current and seemingly contradictory previous results from both imaging and physiological studies. In this schema, the PFC is not only the source of biasing signals targeting earlier processing regions, but is also the target of these signals. This model stands as an alternative to traditional "domain specific" and "domain general" models of frontal organization of WM, and as an extension of earlier models of PFC mechanisms related to the cognitive control of goal directed behavior.
前额叶皮层(PFC)支持在工作记忆(WM)中维持当前相关信息。PFC如何组织以维持不同的信息,这些信息如何结合成一个统一的整体,以及这种表征如何随任务需求而变化,目前仍存在争议。在两项使用功能磁共振成像(fMRI)的实验中,测量了在维持抽象视觉模式、位置或它们的“结合”时的神经活动模式。在延迟期间,PFC中的共同区域是活跃的,但背侧-腹侧/空间-非空间功能拓扑结构在三种延迟类型之间有所区分。在结合延迟期间,没有招募额外的神经结构。相反,结合延迟的特征是与该皮层区域的反应相比显著减少,同时维持其“偏好”信息。本文提出了一个模型,将“偏向竞争”原则扩展到PFC和WM中信息的动态维持,该模型解释了当前以及先前成像和生理学研究中看似矛盾的结果。在这个模式中,PFC不仅是针对早期处理区域的偏向信号的来源,也是这些信号的目标。该模型是WM额叶组织传统“领域特定”和“领域一般”模型的替代方案,也是与目标导向行为认知控制相关的PFC机制早期模型的扩展。