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Failure of self-consistency in the discrete resource model of visual working memory

机译:视觉工作记忆的离散资源模型中的自相矛盾性失败

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摘要

The discrete resource model of working memory proposes that each individual has a fixed upper limit on the number of items they can store at one time, due to division of memory into a few independent “slots”. According to this model, responses on short-term memory tasks consist of a mixture of noisy recall (when the tested item is in memory) and random guessing (when the item is not in memory). This provides two opportunities to estimate capacity for each observer: first, based on their frequency of random guesses, and second, based on the set size at which the variability of stored items reaches a plateau. The discrete resource model makes the simple prediction that these two estimates will coincide. Data from eight published visual working memory experiments provide strong evidence against such a correspondence. These results present a challenge for discrete models of working memory that impose a fixed capacity limit.
机译:工作内存的离散资源模型建议,由于将内存划分为几个独立的“插槽”,因此每个人一次可以存储的项目数具有固定的上限。根据此模型,对短期记忆任务的响应包括嘈杂的回忆(当被测项目在内存中时)和随机猜测(当项目不在内存中时)的混合。这提供了两个机会来估计每个观察者的能力:第一,基于他们的随机猜测的频率,第二,基于所存储项目的可变性达到平稳状态的集合大小。离散资源模型做出简单的预测,即这两个估计将重合。来自八项公开的视觉工作记忆实验的数据为反对这种对应提供了有力的证据。这些结果给离散的工作内存模型提出了挑战,这些模型会施加固定的容量限制。

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