Heinrich Sven P, Aertsen Ad, Bach Michael
Elektrophysiologisches Labor, Univ.-Augenklinik Freiburg, Killianstr. 5, 79106 Freiburg, Germany.
Vision Res. 2008 Mar;48(6):809-18. doi: 10.1016/j.visres.2007.12.012. Epub 2008 Feb 4.
A number of studies have demonstrated a reduction in neural activity for oblique gratings as compared to horizontal or vertical gratings. This has been associated with the psychophysical oblique effect. Using event-related potentials, we now assessed the neural activity associated with the processing of higher-order stimuli of different orientations. We applied a novel stimulus paradigm that is particularly suited to investigate mid- and high-level vision by obviating low-level responses. It consisted of a line grid that emerged perspicuously from a continuous movement of stimulus elements without any temporal discontinuances in stimulus presentation. This Gestalt could be oriented along the cardinal axes or rotated by 45 degrees . We obtained distinct event-related potentials with a moderate task-dependence. They showed a correlate of Gestalt processing that did not depend on the orientation, followed by a P300-like component that was 50% larger for the 45 degrees Gestalt. Surprisingly, this oblique effect is opposite to previous studies using gratings. We propose that it originated from a bias in neural processing, induced by the long-term environmental experience of the subjects.
多项研究表明,与水平或垂直光栅相比,倾斜光栅的神经活动会减少。这与心理物理学上的倾斜效应有关。我们现在使用事件相关电位来评估与不同方向的高阶刺激处理相关的神经活动。我们应用了一种新颖的刺激范式,该范式特别适合通过消除低水平反应来研究中高级视觉。它由一个线栅组成,该线栅通过刺激元素的连续运动清晰地呈现出来,刺激呈现过程中没有任何时间间断。这种格式塔可以沿着基本轴定向或旋转45度。我们获得了具有适度任务依赖性的不同事件相关电位。它们显示出一种与格式塔处理相关的信号,该信号不依赖于方向,随后是一个类似P300的成分,对于45度格式塔,该成分大50%。令人惊讶的是,这种倾斜效应与之前使用光栅的研究相反。我们认为它源于受试者长期环境经验所诱发的神经处理偏差。