Department of Cognitive, Linguistic, and Psychological Sciences, Brown University, Providence, United States.
RIKEN Center for Brain Science, Wako, Japan.
Elife. 2022 Oct 31;11:e80153. doi: 10.7554/eLife.80153.
For flexible goal-directed behavior, prioritizing and selecting a specific action among multiple candidates are often important. Working memory has long been assumed to play a role in prioritization and planning, while bridging cross-temporal contingencies during action selection. However, studies of working memory have mostly focused on memory for single components of an action plan, such as a rule or a stimulus, rather than management of all of these elements during planning. Therefore, it is not known how post-encoding prioritization and selection operate on the entire profile of representations for prospective actions. Here, we assessed how such control processes unfold over action representations, highlighting the role of conjunctive representations that nonlinearly integrate task-relevant features during maintenance and prioritization of action plans. For each trial, participants prepared two independent rule-based actions simultaneously, then they were retro-cued to select one as their response. Prior to the start of the trial, one rule-based action was randomly assigned to be high priority by cueing that it was more likely to be tested. We found that both full action plans were maintained as conjunctive representations during action preparation, regardless of priority. However, during output selection, the conjunctive representation of the high-priority action plan was more enhanced and readily selected as an output. Furthermore, the strength of the high-priority conjunctive representation was associated with behavioral interference when the low-priority action was tested. Thus, multiple alternate upcoming actions were maintained as integrated representations and served as the target of post-encoding attentional selection mechanisms to prioritize and select an action from within working memory.
对于灵活的目标导向行为,在多个候选者中优先选择和选择特定的动作通常很重要。工作记忆长期以来一直被认为在优先级排序和计划中发挥作用,而在选择动作时桥接跨时间关联。然而,工作记忆的研究大多集中在对动作计划的单个组件(如规则或刺激)的记忆上,而不是在计划过程中管理所有这些元素。因此,尚不清楚在整个前瞻性动作表示的整个概要中,编码后优先级排序和选择是如何运作的。在这里,我们评估了这些控制过程如何在动作表示中展开,强调了联合表示的作用,该联合表示在动作计划的维持和优先级排序过程中非线性地整合了与任务相关的特征。对于每个试验,参与者同时准备两个独立的基于规则的动作,然后回溯提示选择其中一个作为响应。在试验开始之前,通过提示更有可能进行测试,随机指定一个基于规则的动作作为高优先级。我们发现,无论优先级如何,在动作准备过程中,完整的动作计划都被维持为联合表示。然而,在输出选择期间,高优先级动作计划的联合表示被更强烈地增强并容易被选为输出。此外,当测试低优先级动作时,高优先级联合表示的强度与行为干扰相关。因此,多个即将到来的替代动作被维持为整合的表示,并作为编码后注意力选择机制的目标,以在工作记忆中优先选择和选择动作。