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Modeling working memory: a computational implementation of the Time-Based Resource-Sharing theory

机译:建模工作内存:基于时间的资源共享理论的计算实现

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摘要

Working memory is a core concept in cognition, predicting about 50% of the variance in IQ and reasoning tasks. A popular test of working memory is the complex span task, in which encoding of memoranda alternates with processing of distractors. A recent model of complex span performance, the Time-Based-Resource-Sharing (TBRS) model of Barrouillet and colleagues, has seemingly accounted for several crucial findings, in particular the intricate trade-off between deterioration and restoration of memory in the complex span task. According to the TBRS, memory traces decay during processing of the distractors, and they are restored by attentional refreshing during brief pauses in between processing steps. However, to date, the theory has been formulated only at a verbal level, which renders it difficult to test and to be certain of its intuited predictions. We present a computational instantiation of the TBRS and show that it can handle most of the findings on which the verbal model was based. We also show that there are potential challenges to the model that await future resolution. This instantiated model, TBRS*, is the first comprehensive computational model of performance in the complex span paradigm. The Matlab model code is available as a supplementary material of this article.
机译:工作记忆是认知中的核心概念,可以预测智商和推理任务中约50%的差异。工作记忆的一种流行测试是复杂的跨度任务,其中备忘录的编码与干扰项的处理交替进行。 Barrouillet及其同事的基于时间的资源共享(TBRS)模型是复杂跨度性能的最新模型,似乎已解释了多个关键发现,尤其是复杂跨度中内存退化和恢复之间的复杂权衡。任务。根据TBRS,记忆痕迹在分心器处理期间会衰减,并且在处理步骤之间的短暂暂停期间通过注意刷新来恢复它们。然而,迄今为止,该理论仅在语言层面上被提出,这使其难以测试并且难以确定其直觉的预测。我们提出了TBRS的计算实例,并表明它可以处理语言模型所基于的大部分发现。我们还表明,该模型存在潜在的挑战,需要等待将来的解决。此实例化模型TBRS *是复杂跨度范式中性能的第一个综合计算模型。 Matlab模型代码可用作本文的补充材料。

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