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Examining the influence of working memory on updating mental models

机译:检查工作记忆对更新心理模型的影响

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The ability to accurately build and update mental representations of our environment depends on our ability to integrate information over a variety of time scales and detect changes in the regularity of events. As such, the cognitive mechanisms that support model building and updating are likely to interact with those involved in working memory (WM). To examine this, we performed three experiments that manipulated WM demands concurrently with the need to attend to regularities in other stimulus properties (i.e., location and shape). That is, participants completed a prediction task while simultaneously performing an n-back WM task with either no load or a moderate load. The distribution of target locations (Experiment 1) or shapes (Experiments 2 and 3) included some level of probabilistic regularity, which, unbeknown to participants, changed abruptly within each block. Moderate WM load hampered the ability to benefit from target regularities and to adapt to changes in those regularities (i.e., the prediction task). This was most pronounced when both prediction and WM requirements shared the same target feature. Our results show that representational updating depends on free WM resources in a domain-specific fashion.
机译:准确构建和更新我们环境的心理表征的能力取决于我们在各种时间范围内整合信息并检测事件规律性变化的能力。因此,支持模型建立和更新的认知机制可能会与工作记忆(WM)中涉及的那些机制进行交互。为了检验这一点,我们进行了三个实验,这些实验在满足其他刺激特性(即位置和形状)规律性的同时操纵了WM需求。也就是说,参与者在无负载或中等负载的情况下同时执行n-back WM任务时完成了预测任务。目标位置(实验1)或形状(实验2和3)的分布包括一定程度的概率规律性,参与者不知道,这些规律性在每个块中都会突然改变。适度的WM负载妨碍了从目标规律性中受益并适应这些规律性变化的能力(即预测任务)。当预测和WM需求共享相同的目标特征时,这一点最为明显。我们的结果表明,代表性更新取决于特定领域的免费WM资源。

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