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首页> 外文期刊>Journal of vision >Obligatory encoding of task-irrelevant features depletes working memory resources
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Obligatory encoding of task-irrelevant features depletes working memory resources

机译:与任务无关的特征的强制编码会耗尽工作内存资源

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Abstract Abstract: Abstract?? Selective attention is often considered the a??gatewaya?? to visual working memory (VWM). However, the extent to which we can voluntarily control which of an object's features enter memory remains subject to debate. Recent research has converged on the concept of VWM as a limited commodity distributed between elements of a visual scene. Consequently, as memory load increases, the fidelity with which each visual feature is stored decreases. Here we used changes in recall precision to probe whether task-irrelevant features were encoded into VWM when individuals were asked to store specific feature dimensions. Recall precision for both color and orientation was significantly enhanced when task-irrelevant features were removed, but knowledge of which features would be probed provided no advantage over having to memorize both features of all items. Next, we assessed the effect an interpolated orientation-or color-matching task had on the resolution with which orientations in a memory array were stored. We found that the presence of orientation information in the second array disrupted memory of the first array. The cost to recall precision was identical whether the interfering features had to be remembered, attended to, or could be ignored. Therefore, it appears that storing, or merely attending to, one feature of an object is sufficient to promote automatic encoding of all its features, depleting VWM resources. However, the precision cost was abolished when the match task preceded the memory array. So, while encoding is automatic, maintenance is voluntary, allowing resources to be reallocated to store new visual information.
机译:摘要摘要:摘要?选择性注意通常被认为是“门户”。视觉工作记忆(VWM)。但是,我们在何种程度上可以自愿控制某个对象的特征进入内存,仍有待商debate。最近的研究已经集中在VWM概念上,它是在视觉场景元素之间分配的有限商品。因此,随着存储器负载的增加,存储每个视觉特征的保真度降低。在这里,我们使用召回精度的变化来探查当要求个人存储特定特征尺寸时是否将与任务无关的特征编码为VWM。删除与任务无关的功能时,颜色和方向的召回精度都得到了显着提高,但是了解将探查哪些功能并没有带来必须记住所有项目的两个功能的优势。接下来,我们评估了插值方向或颜色匹配任务对存储阵列中方向的分辨率的影响。我们发现,第二阵列中方向信息的存在破坏了第一阵列的内存。无论是必须记住,关注还是可以忽略干扰功能,召回精度的代价是相同的。因此,似乎存储或仅关注对象的一个​​特征足以促进其所有特征的自动编码,从而耗尽VWM资源。但是,当匹配任务在内存阵列之前时,精度成本被取消。因此,尽管编码是自动的,但维护是自愿的,从而可以重新分配资源来存储新的视觉信息。

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