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Studying Spatial Visual Attention: The Attention-Window Task as a Measurement Tool for the Shape and Maximum Spread of the Attention Window

机译:研究空间视觉注意:注意力窗口作为测量工具的形状和最大扩散的注意力窗口

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Visual attentional processes have been an important topic in psychological research for years. Over the last few decades, new methods have been developed, aiming to explore the characteristics of the focus of attention in more detail. Studies that applied the “Attention-Window Task” (AWT) quantified the maximum extent of the “Attention Window” (AW) along its horizontal, vertical, and diagonal meridians, when subjects were required to perceive two peripheral stimuli simultaneously. In three experiments using the AWT, we investigated the effects of cue validity (Experiment 1), stimulus-onset asynchrony (SOA) (i.e., the interval between the onset of the cues and the onset of the target stimuli), and target stimuli complexity (Experiment 3) on the size and shape of the AW. Results showed that the AW was greater under valid cue conditions compared to invalid conditions, when the locations of cue and target stimuli differed. Furthermore, the AW decreased when the SOA between the cue and targets was reduced and also when the task complexity was higher and more objects within the target stimuli had to be classified. Overall, it can be stated that the AWT with its possible task changes and adjustments can be considered as a potential standard tool to measure the maximum spread and shape of the spatial AW.
机译:视觉注意事件一直是心理学研究的重要课题。在过去的几十年中,已经开发了新的方法,旨在更详细地探讨关注的重点的特征。当需要同时感知两个外周刺激时,应用“注意窗口任务”(AWT)的研究沿着其水平,垂直和对角线经络量化了“注意窗口”(AW)的最大程度。在使用AWT的三个实验中,我们研究了提示有效性(实验1),刺激发作异步(SOA)的影响(即,提示发作和目标刺激的发作之间的间隔),以及目标刺激复杂性(实验3)在AW的尺寸和形状上。结果表明,与无效条件相比,当提示和目标刺激的位置不同时,AW在有效的提示条件下更大。此外,当提示和目标之间的SOA减少时,AW减少,并且当任务复杂性更高并且必须对目标刺激内的更多物体进行分类时。总的来说,可以指出,具有可能的任务变化和调整的AWT可以被视为测量空间AW的最大扩展和形状的潜在标准工具。

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