Gliksman Yarden, Weinbach Noam, Henik Avishai
Department of Psychology and the Zlotowski Center for Neuroscience, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Department of Psychology and the Zlotowski Center for Neuroscience, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Acta Psychol (Amst). 2016 Oct;170:139-45. doi: 10.1016/j.actpsy.2016.06.013. Epub 2016 Jul 14.
Enumeration of elements differs as a function of their range. Subitizing (quantities 1-4) is considered to be an accurate and quick process with reaction times minimally affected by the number of presented elements within its range. In contrast, small estimation (range of 5-9 elements exposed briefly) is a less precise linear process. Subitizing was consider to be a pre-attentive process for many years. However, recent studies found that when attentional resources were occupied elsewhere, the subitizing process was impaired. In the current study, we examined whether subitizing can be facilitated by improving engagement of attention. Specifically, brief alerting cues that increase attentional engagement were presented in half of the trials during enumeration tasks. In Experiment 1, participants were required to enumerate dots presented in random arrays within the subitizing or small estimation range. Alerting facilitated enumeration of quantities in the subitizing range, but not in the small estimation range. We suggested that the benefit of alerting on the subitizing process was achieved via enhancement of global processing, a process that was previously associated with both alerting and subitizing. In Experiment 2, we provided direct evidence for this hypothesis by demonstrating that when global processing was used for items in the small estimation range (i.e., presenting quantities in a canonical array), a subitizing-like pattern was revealed in quantities beyond the subitizing range.
元素的计数方式因其范围不同而有所差异。数感(数量为1 - 4)被认为是一个准确且快速的过程,反应时间受该范围内呈现元素数量的影响极小。相比之下,小数量估计(短暂呈现5 - 9个元素的范围)是一个不太精确的线性过程。多年来,数感一直被认为是一种前注意过程。然而,最近的研究发现,当注意力资源被占用在其他地方时,数感过程会受到损害。在当前的研究中,我们考察了是否可以通过提高注意力的参与度来促进数感。具体而言,在计数任务的一半试验中呈现简短的提示信号,以增加注意力的参与度。在实验1中,要求参与者对数感或小数量估计范围内随机排列呈现的点进行计数。提示信号促进了数感范围内数量的计数,但对小数量估计范围无效。我们认为,提示信号对数感过程的益处是通过增强整体加工实现的,这一过程之前与提示信号和数感都有关联。在实验2中,我们通过证明当对小数量估计范围内的项目使用整体加工时(即按标准阵列呈现数量),在数感范围之外的数量中揭示出类似数感的模式,为这一假设提供了直接证据。