Rideaux Reuben, Baker Emma, Edwards Mark
Research School of Psychology, The Australian National University, Australia; Department of Psychology, University of Cambridge, United Kingdom.
Research School of Psychology, The Australian National University, Australia.
Vision Res. 2018 Aug;149:24-29. doi: 10.1016/j.visres.2018.06.005. Epub 2018 Jun 21.
Information can be consolidated into visual working memory in parallel, i.e. two items can be consolidated in the same time required to consolidate one. However, while motion direction items consolidated in parallel are encoded at a reduced precision, no such reduction has been reported for colour. Here we examine two possible explanations for the inconsistency between the phenomena associated with consolidating these features in parallel: i) that reduced precision can only be detected when more than two colour items are consolidated in parallel, or ii) that the exposure duration used in previous studies was too long, allowing observers serially consolidate items. Our results show that (like motion direction) colour items consolidated in parallel are encoded at a reduced precision and the critical feature for detecting this phenomenon is the exposure duration. Furthermore, we demonstrate that this process is limited to two items. These findings indicate a general principle of consolidation into visual working memory, that is, a trade-off between the number of items consolidated in parallel and the precision at which they are encoded.
信息可以并行整合到视觉工作记忆中,也就是说,整合两个项目所需的时间与整合一个项目所需的时间相同。然而,虽然并行整合的运动方向项目是以较低精度编码的,但对于颜色,尚未有此类精度降低的报道。在这里,我们研究了两种可能的解释,以说明并行整合这些特征时相关现象之间的不一致:i)只有当并行整合的颜色项目超过两个时,才能检测到精度降低;ii)先前研究中使用的曝光持续时间过长,使观察者能够串行整合项目。我们的结果表明,(与运动方向一样)并行整合的颜色项目是以较低精度编码的,而检测这一现象的关键特征是曝光持续时间。此外,我们证明这个过程仅限于两个项目。这些发现表明了一个整合到视觉工作记忆中的一般原则,即在并行整合的项目数量和它们被编码的精度之间进行权衡。