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Variability in encoding precision accounts for visual short-term memory limitations

机译:编码精度的差异说明了视觉短期记忆的局限性

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摘要

It is commonly believed that visual short-term memory (VSTM) consists of a fixed number of "slots" in which items can be stored. An alternative theory in which memory resource is a continuous quantity distributed over all items seems to be refuted by the appearance of guessing in human responses. Here, we introduce a model in which resource is not only continuous but also variable across items and trials, causing random fluctuations in encoding precision. We tested this model against previous models using two VSTM paradigms and two feature dimensions. Our model accurately accounts for all aspects of the data, including apparent guessing, and outperforms slot models in formal model comparison. At the neural level, variability in precision might correspond to variability in neural population gain and doubly stochastic stimulus representation. Our results suggest that VSTM resource is continuous and variable rather than discrete and fixed and might explain why subjective experience of VSTM is not all or none.
机译:通常认为,视觉短期记忆(VSTM)由固定数量的“插槽”组成,可以在其中存储项目。内存资源是分布在所有项目上的连续量的另一种理论似乎被人类反应中的猜测所驳斥。在这里,我们介绍一个模型,其中资源不仅是连续的,而且在项目和试验之间也是可变的,从而导致编码精度的随机波动。我们使用两个VSTM范例和两个特征维,将该模型与以前的模型进行了测试。我们的模型准确地说明了数据的所有方面,包括明显的猜测,并且在正式模型比较中胜过广告位模型。在神经水平上,精度的变化可能对应于神经种群获得和双随机刺激表示的变化。我们的结果表明,VSTM资源是连续且可变的,而不是离散且固定的,并且可以解释为什么VSTM的主观体验不是全部或没有。

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