Allgemeine und Experimentelle Psychologie, Ludwig-Maximilians-Universität München, Munich, Germany.
Department of Psychology and Center for Neural Science, New York University, New York, NY, USA.
Behav Res Methods. 2023 Aug;55(5):2583-2594. doi: 10.3758/s13428-022-01916-2. Epub 2022 Aug 1.
Psychophysical paradigms measure visual attention via localized test items to which observers must react or whose features have to be discriminated. These items, however, potentially interfere with the intended measurement, as they bias observers' spatial and temporal attention to their location and presentation time. Furthermore, visual sensitivity for conventional test items naturally decreases with retinal eccentricity, which prevents direct comparison of central and peripheral attention assessments. We developed a stimulus that overcomes these limitations. A brief oriented discrimination signal is seamlessly embedded into a continuously changing 1/f noise field, such that observers cannot anticipate potential test locations or times. Using our new protocol, we demonstrate that local orientation discrimination accuracy for 1/f filtered signals is largely independent of retinal eccentricity. Moreover, we show that items present in the visual field indeed shape the distribution of visual attention, suggesting that classical studies investigating the spatiotemporal dynamics of visual attention via localized test items may have obtained a biased measure. We recommend our protocol as an efficient method to evaluate the behavioral and neurophysiological correlates of attentional orienting across space and time.
心理物理学范式通过局部测试项目来测量视觉注意力,观察者必须对这些项目做出反应或辨别其特征。然而,这些项目可能会干扰预期的测量,因为它们会使观察者的空间和时间注意力偏向它们的位置和呈现时间。此外,传统测试项目的视觉灵敏度随着视网膜的偏心度自然降低,这使得对中央和周边注意力评估的直接比较变得困难。我们开发了一种可以克服这些限制的刺激。一个短暂的定向判别信号无缝嵌入到不断变化的 1/f 噪声场中,使得观察者无法预测潜在的测试位置或时间。使用我们的新协议,我们证明了对于 1/f 滤波信号的局部方向判别准确性在很大程度上与视网膜偏心度无关。此外,我们还表明,视野中的项目确实会影响视觉注意力的分布,这表明通过局部测试项目研究视觉注意力的时空动态的经典研究可能得到了有偏差的测量结果。我们建议将我们的方案作为一种有效的方法,用于评估注意力在空间和时间上的行为和神经生理学相关性。