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Event-related potentials reveal an early advantage for luminance contours in the processing of objects

机译:与事件相关的电位揭示了在物体处理中亮度轮廓的早期优势

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摘要

Detection and identification of objects are the most crucial goals of visual perception. We studied the role of luminance and chromatic information for object processing by comparing performance of familiar, meaningful object contours with those of novel, non-object contours. Comparisons were made between full-color and reduced-color object (or non-object) contours. Full-color stimuli contained both chromatic and luminance information, whereas luminance information was absent in the reduced-color stimuli. All stimuli were made equally salient by fixing them at multiples of discrimination threshold contrast. In a subsequent electroencephalographic experiment observers were asked to classify contours as objects or non-objects. An advantage in accuracy was found for full-color stimuli over the reduced-color stimuli but only if the contours depicted objects as opposed to non-objects. Event-related potentials revealed the neural correlate of this object-specific luminance advantage. The amplitude of the centro-occipital N1 component was modulated by stimulus class with the effect being driven by the presence of luminance information. We conclude that high-level discrimination processes in the cortex start relatively early and exhibit object-selective effects only in the presence of luminance information. This is consistent with the superiority of luminance in subserving object identification processes.
机译:检测和识别物体是视觉感知的最关键目标。通过比较熟悉的,有意义的物体轮廓与新型,非物体轮廓的性能,我们研究了亮度和色度信息在物体处理中的作用。在全色和淡色对象(或非对象)轮廓之间进行了比较。全色刺激同时包含色度和亮度信息,而减少颜色的刺激中不包含亮度信息。通过将所有刺激固定在辨别阈值对比度的倍数上,可以使所有刺激同样显着。在随后的脑电图实验中,要求观察者将轮廓分类为物体或非物体。发现全色刺激相对于减少颜色的刺激在准确性上有优势,但是仅当轮廓线描绘的是物体而非非物体时。事件相关电位揭示了该特定对象亮度优势的神经相关性。枕骨中央N1分量的振幅通过刺激等级进行调节,其效果由亮度信息的存在驱动。我们得出的结论是,皮质中的高级区分过程相对较早开始,并且仅在存在亮度信息的情况下才显示对象选择效果。这与在辅助对象识别过程中亮度的优势相一致。

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