Hu Rui, Zhang Liqun, Meng Pu, Meng Xin, Weng Minghan
School of Design, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai 200240, China.
Brain Sci. 2022 Mar 27;12(4):447. doi: 10.3390/brainsci12040447.
This research measured human neural responses to images of different visual complexity levels using the oddball paradigm to explore the neurocognitive responses of complexity perception in visual processing. In the task, 24 participants (12 females) were required to react to images with high complexity for all stimuli. We hypothesized that high-complexity stimuli would induce early visual and attentional processing effects and may elicit the visual mismatch negativity responses and the emergence of error-related negativity. Our results showed that the amplitude of P1 and N1 were unaffected by complexity in the early visual processing. Under the target stimuli, both N2 and P3b components were reported, suggesting that the N2 component was sensitive to the complexity deviation, and the attentional processing related to complexity may be derived from the occipital zone according to the feature of the P3b component. In addition, compared with the low-complexity stimulus, the high-complexity stimulus aroused a larger amplitude of the visual mismatch negativity. The detected error negativity (Ne) component reflected the error detection of the participants' mismatch between visual complexity and psychological expectations.
本研究采用Oddball范式测量了人类对不同视觉复杂度水平图像的神经反应,以探索视觉处理中复杂度感知的神经认知反应。在该任务中,要求24名参与者(12名女性)对所有刺激中的高复杂度图像做出反应。我们假设高复杂度刺激会诱发早期视觉和注意力处理效应,并可能引发视觉失配负波反应以及错误相关负波的出现。我们的结果表明,在早期视觉处理中,P1和N1的波幅不受复杂度的影响。在目标刺激下,同时记录到了N2和P3b成分,这表明N2成分对复杂度偏差敏感,并且根据P3b成分的特征,与复杂度相关的注意力处理可能源自枕叶区域。此外,与低复杂度刺激相比,高复杂度刺激引发了更大波幅的视觉失配负波。检测到的错误负波(Ne)成分反映了参与者对视觉复杂度与心理预期之间不匹配的错误检测。