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Contrasting single and multi-component working-memory systems in dual tasking

机译:双重任务中的单组件和多组件工作内存系统对比

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摘要

Working memory can be a major source of interference in dual tasking. However, there is no consensus on whether this interference is the result of a single working memory bottleneck, or of interactions between different working memory components that together form a complete working-memory system. We report a behavioral and an fMRI dataset in which working memory requirements are manipulated during multitasking. We show that a computational cognitive model that assumes a distributed version of working memory accounts for both behavioral and neuroimaging data better than a model that takes a more centralized approach. The model's working memory consists of an attentional focus, declarative memory, and a subvocalized rehearsal mechanism. Thus, the data and model favor an account where working memory interference in dual tasking is the result of interactions between different resources that together form a working memory system. (C) 2016 Elsevier Inc. All rights reserved.
机译:工作记忆可能是双重任务中的主要干扰源。但是,关于这种干扰是单个工作内存瓶颈还是共同构成一个完整的工作内存系统的不同工作内存组件之间的相互作用的结果,尚无共识。我们报告了一个行为和功能磁共振成像数据集,其中在多任务处理中需要处理工作记忆。我们表明,假定采用工作记忆的分布式版本的计算认知模型比采用更集中化方法的模型更好地说明了行为和神经影像数据。该模型的工作记忆包括注意焦点,声明性记忆和含糊的演练机制。因此,数据和模型有利于一个帐户,其中双重任务中的工作内存干扰是一起形成工作内存系统的不同资源之间相互作用的结果。 (C)2016 Elsevier Inc.保留所有权利。

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