期刊文献+

错觉轮廓的适应效应

The adaptation to Kanizsa-type illusory contours
下载PDF
导出
摘要 错觉轮廓反映知觉的主动建构过程,考察其是否存在适应效应有助于理解视觉系统反馈调节的特性。我们采用Kanizsa这种典型的错觉轮廓来研究其适应过程,结果发现:Kanizsa错觉轮廓具有适应效应,并且这种适应主要是由主观形成的整体轮廓造成的,而不是由Pac-Man上的线条引起的。表明依赖于高级视觉皮层反馈调节的主观建构过程和自下而上的神经元信息一样,会随呈现时间的增加,神经活动减弱,体现为适应效应。 One grouping principle of visual perception is to integrate spatially separated and partially occluded local parts into whole object representations. For example, in the processing of Kanizsa-type illusory contours (ICs), a subjective shape contour is perceived despite the inducers being isolated. The shape discrimination of the Kanizsa illusory contours depends on feedback signals in the brain. Thus, investigations of the adaptation to Kanizsa illusory contours can help us understand the temporal properties of top-down signals in the visual system. In the present study, four experiments were conducted to explore the adaptation to Kanizsa illusory contours. Participants adapted to +5~ and -5~ illusory contours in experiments la and lb. In experiments 2a and 2b, in order to eliminate the possibility that the adaptation effect could be explained by the lines on the inducers, the inducer lines (experiment 2a) or the whole shape (experiment 2b) was used as the adapting images. For all of the experiments, illusory contours of varied degrees were used as test images. Subjects were instructed to respond as accurately and quickly as possible to the test images to judge whether they were fat or thin. When adapting to fat illusory contours, the participants tended to perceive the following tests as thin; on the contrary, when adapting to thin contours, they tended to perceive the test images as fat. These results showed significant adaption effect of Kanizsa contours. Further control experiments (2a and 2b) indicated that the adaptation effect was mainly caused by the illusory contour itself, rather than by the lines on the Pac-Man. These results revealed that adaptation effect existed in voluntary construction processes, indicating that the strength of feedback signals from higher-level visual cortex could become weak over time.
作者 张秀玲 侯亚楠 张福绪 梅松丽 康静梅 ZHANG Xiuling;HOU Yanan;ZHANG Fuxu;MEI Songli;KANG Jingmei(School of Psychology, Northeast Normal University, Changchun 130024, China;School of Public Health, Jilin University, Changchun 130021, China)
出处 《心理学报》 CSSCI CSCD 北大核心 2018年第2期168-175,共8页 Acta Psychologica Sinica
基金 国家自然科学基金(31100730) 博士后科学基金(2013T60305)特别资助
关键词 Kanizsa错觉轮廓 适应 反馈调节 Kanizsa illusory contour feedback signals adaptation
  • 相关文献

参考文献1

二级参考文献79

  • 1Baccus, S. A., & Meister, M. (2002). Fast and slow contrast adaptation in retinal circuitry. Neuron, 36, 909-919.
  • 2Baker, D. H., & Meese, T. S. (2012). Interocular transfer of spatial adaptation is weak at low spatial frequencies. Vision Research, 63,81-87.
  • 3Bao, M.,& Engel, S. A. (2012). Distinct mechanism for long-term contrast adaptation. Proceedings of the National Academy of Sciences of the United States of America, 109, 5898-5903.
  • 4Bao, M., Fast, E.,Mesik, J.,& Engel, S. A. (2013). Distinct mechanisms control contrast adaptation over different timescales. Journal of Vision, 73(10), 1-11.
  • 5Boynton, G. M., & Finney, E. M. (2003). Orientation-specific adaptation in human visual cortex. The Journal of Neuroscience, 23,8781-8787.
  • 6Brown, S. P., & Masland,R. H. (2001). Spatial scale and cellular substrate of contrast adaptation by retinal ganglion cells. Nature Neuroscience, 4, 44-51.
  • 7Carandini, M., Movshon, J. A., & Ferster, D, (1998). Pattern adaptation and cross-orientation interactions in the primary visual cortex. Neuropharmacology, 37, 501-511.
  • 8Clifford, C. W., Webster, M. A., Stanley, G. B.,Stocker, A. A., Kohn, A.,Sharpee, T. O.,& Schwartz, O. (2007). Visual adaptation: Neural, psychological and computational aspects. Vision Research, 471 3125-3131.
  • 9Conway, B. R. (2001). Spatial structure of cone inputs to color cells in alert macaque primary visual cortex (V-l). The Journal of Neuroscience, 21, 2768-2783.
  • 10Daelli,V.,van Rijsbergen, N. J., & Treves, A. (2010). How recent experience affects the perception of ambiguous objects. Brain Research, 1322, 81-91.

共引文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部