Schwarz Wolf, Eiselt Anne-Kathrin
Department of Psychology, University of Potsdam, P.O. Box 601553, 14415 Potsdam, Germany.
Atten Percept Psychophys. 2012 Aug;74(6):1098-103. doi: 10.3758/s13414-012-0342-8.
We present three experiments in which observers searched for a target digit among distractor digits in displays in which the mean numerical target-distractor distance was varied. Search speed and accuracy increased with numerical distance in both target-present and target-absent trials (Exp. 1A). In Experiment 1B, the target 5 was replaced with the letter S. The results suggest that the findings of Experiment 1A do not simply reflect the fact that digits that were numerically closer to the target coincidentally also shared more physical features with it. In Experiment 2, the numerical distance effect increased with set size in both target-present and target-absent trials. These findings are consistent with the view that increasing numerical target-distractor distance affords faster nontarget rejection and target identification times. Recent neurobiological findings (e.g., Nieder, 2011) on the neuronal coding of numerosity have reported a width of tuning curves of numerosity-selective neurons that suggests graded, distance-dependent coactivation of the representations of adjacent numbers, which in visual search would make it harder to reject numerically closer distractors as nontargets.
我们进行了三项实验,实验中观察者要在干扰数字的显示中搜索目标数字,其中目标数字与干扰数字之间的平均数值距离是变化的。在目标存在和目标不存在的试验中,搜索速度和准确性都随着数值距离的增加而提高(实验1A)。在实验1B中,目标数字5被字母S取代。结果表明,实验1A的发现并非仅仅反映了这样一个事实,即数值上更接近目标的数字碰巧也与目标共享更多的物理特征。在实验2中,在目标存在和目标不存在的试验中,数值距离效应都随着集合大小的增加而增强。这些发现与以下观点一致,即增加目标数字与干扰数字之间的数值距离能够加快非目标排除和目标识别的时间。最近关于数字神经元编码的神经生物学发现(例如,尼德,2011年)报告了数字选择性神经元调谐曲线的宽度,这表明相邻数字的表征存在分级的、距离依赖性的共同激活,在视觉搜索中,这会使更难将数值上更接近的干扰物作为非目标排除。