Zhang JunJun, Zhu WeiNa, Ding XiaoJun, Zhou ChangLe, Hu XinTian, Ma YuanYe
Laboratory of Mind, Art and Computation, Xiamen University, Xiamen, China.
Sci China C Life Sci. 2009 Dec;52(12):1198-204. doi: 10.1007/s11427-009-0150-0. Epub 2009 Dec 17.
According to Chen's theory, topological differences are perceived faster than feature differences in early visual perception. We hypothesized that topological perception is caused by the sensitivity in discriminating figures with and without "holes". An ERP experiment was conducted utilizing a passive paradigm to investigate the differences in perceiving figures with "hole" and with "no-hole". The results showed differences in N170 components between figures with "holes" and with "no-holes". The inversion of the "hole" could influence the latency of N170, but the inversion of the "no-hole" could not, which indicated that global features are processed first in the "hole" perception whilst local features are given priority to the "no-hole" perception. This result was similar to studies concerning face and non-face objects, suggesting a configural processing of the "hole".
根据陈的理论,在早期视觉感知中,拓扑差异比特征差异被感知得更快。我们假设拓扑感知是由区分有“洞”和无“洞”图形的敏感性引起的。利用被动范式进行了一项ERP实验,以研究感知有“洞”和无“洞”图形的差异。结果显示,有“洞”图形和无“洞”图形之间的N170成分存在差异。“洞”的倒置会影响N170的潜伏期,但“无洞”的倒置则不会,这表明在“洞”的感知中全局特征先被处理,而在“无洞”的感知中局部特征被优先处理。这一结果与关于面孔和非面孔物体的研究相似,表明对“洞”进行了构型加工。