Schut Martijn J, Van der Stoep Nathan, Postma Albert, Van der Stigchel Stefan
Experimental Psychology, Helmholtz Institute, Utrecht University, Utrecht, The
J Vis. 2017 Jun 1;17(6):15. doi: 10.1167/17.6.15.
To facilitate visual continuity across eye movements, the visual system must presaccadically acquire information about the future foveal image. Previous studies have indicated that visual working memory (VWM) affects saccade execution. However, the reverse relation, the effect of saccade execution on VWM load is less clear. To investigate the causal link between saccade execution and VWM, we combined a VWM task and a saccade task. Participants were instructed to remember one, two, or three shapes and performed either a No Saccade-, a Single Saccade- or a Dual (corrective) Saccade-task. The results indicate that items stored in VWM are reported less accurately if a single saccade-or a dual saccade-task is performed next to retaining items in VWM. Importantly, the loss of response accuracy for items retained in VWM by performing a saccade was similar to committing an extra item to VWM. In a second experiment, we observed no cost of executing a saccade for auditory working memory performance, indicating that executing a saccade exclusively taxes the VWM system. Our results suggest that the visual system presaccadically stores the upcoming retinal image, which has a similar VWM load as committing one extra item to memory and interferes with stored VWM content. After the saccade, the visual system can retrieve this item from VWM to evaluate saccade accuracy. Our results support the idea that VWM is a system which is directly linked to saccade execution and promotes visual continuity across saccades.
为促进眼动过程中的视觉连续性,视觉系统必须在眼跳前获取有关未来中央凹图像的信息。先前的研究表明,视觉工作记忆(VWM)会影响眼跳执行。然而,相反的关系,即眼跳执行对VWM负荷的影响尚不清楚。为了研究眼跳执行与VWM之间的因果关系,我们将一个VWM任务和一个眼跳任务结合起来。参与者被要求记住一个、两个或三个形状,并执行无眼跳任务、单眼跳任务或双眼跳(校正性)任务。结果表明,如果在VWM中保留项目的同时执行单眼跳任务或双眼跳任务,那么存储在VWM中的项目报告的准确性会降低。重要的是,通过执行眼跳而导致VWM中保留项目的反应准确性损失类似于向VWM中额外添加一个项目。在第二个实验中,我们观察到执行眼跳对听觉工作记忆表现没有成本,这表明执行眼跳仅对VWM系统造成负担。我们的结果表明,视觉系统在眼跳前存储即将到来的视网膜图像,这与向记忆中额外添加一个项目具有相似的VWM负荷,并会干扰存储的VWM内容。眼跳之后,视觉系统可以从VWM中检索该项目以评估眼跳准确性。我们的结果支持这样一种观点,即VWM是一个与眼跳执行直接相关的系统,并促进眼跳间的视觉连续性。