Department of Applied Physics, Faculty of Science, Tokyo University of Science, 6-3-1 Niijyuku, Katsushika-ku, Tokyo, 125-8585, Japan.
Sci Rep. 2021 Jul 29;11(1):15407. doi: 10.1038/s41598-021-94091-x.
Visual perception is biased by the preceding visual environment. A well-known perceptual bias is the negative bias where a current percept is biased away from the preceding image (adaptor). The preceding adaptor induces augmentation of early visual evoked potential (the P1 enhancement) of the following test image; the adaptor may invoke certain visual processing for the subsequent test image. However, the visual mechanism underlying P1 enhancement remains unclear. The present study assessed what the P1 alteration reflects in relation to the occurrence of the negative bias. In terms of inter-individual differences, we report that the P1 enhancement of the Necker lattice significantly correlated with the reduction of the reverse-bias effect. Further analyses revealed that the P1 enhancement was insusceptible to neural adaptation to the adaptor at the level of perceptual configuration. The present study suggests that prolonged exposure to a visual image induces modulatory visual processing for the subsequent image (reflected in the P1 enhancement), which is relevant to counteraction of the negative bias.
视觉感知会受到先前视觉环境的影响。一种广为人知的感知偏差是负性偏差,即当前的感知会偏离先前的图像(适应器)。先前的适应器会引起后续测试图像的早期视觉诱发电位(P1 增强)的增强;适应器可能会为后续的测试图像调用某些视觉处理。然而,P1 增强背后的视觉机制仍不清楚。本研究评估了 P1 变化与负性偏差的发生有何关系。就个体差异而言,我们报告说,棋盘格的 P1 增强与反向偏差效应的减小显著相关。进一步的分析表明,在感知结构水平上,P1 增强不受对适应器的神经适应的影响。本研究表明,长时间暴露于视觉图像会为后续图像诱导调制视觉处理(反映在 P1 增强中),这与负性偏差的抵消有关。