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首页> 外文期刊>NeuroImage >Effects of repetition learning on upright, inverted and contrast-reversed face processing using ERPs.
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Effects of repetition learning on upright, inverted and contrast-reversed face processing using ERPs.

机译:重复学习对使用ERP的直立,倒立和对比度反转的面部处理的影响。

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摘要

The effects of short-term learning on memory for inverted, contrast-reversed and upright faces were investigated using event-related potentials (ERPs) in a targetontarget discrimination task following a learning phase of the target. Subjects were equally accurate for all three face types although responding more slowly to inverted and negative faces compared to upright faces. Face type affected both early ERP components P1 and N170, and long-latency components at frontal and parietal sites, reflecting the difficulty of processing inverted faces. Different effects of face type were found for P1 and N170 latencies and amplitudes, suggesting face processing could start around 100-120 ms and is sensitive to facial configuration. Repetition effects were also found on both early and long-latency components. Reduced N170 latency and amplitude for repeated targets are likely due to perceptual priming. Repetition effects on the N250 were delayed for inverted and negative faces, suggesting delayed access to stored facial representations for these formats. Increased frontopolar positivity at 250-300 ms and parietal positivity from 300 to 500 ms reflected familiarity 'old-new' repetition effects that were of similar magnitude for all three face types, indexing the accurate recognition of all faces. Thus, while structural encoding was disrupted by inversion and contrast-reversal, the learning phase was sufficient to abolish the effects of these configural manipulations behaviourally; all three face types were equally well recognised and this was reflected as equally large parietal old-new effects.
机译:在目标的学习阶段之后,在目标/非目标判别任务中使用事件相关电位(ERP)研究了短期学习对反转,对比度反转和直立面部的记忆的影响。尽管与直立面孔相比,对倒立和负面面孔的反应要慢得多,但所有三种面孔类型的受试者均具有相同的准确度。脸型影响早期的ERP组件P1和N170,以及额叶和顶叶部位的长时延组件,这反映了处理倒脸的难度。对于P1和N170延迟和振幅,发现了面部类型的不同影响,这表明面部处理可能在100-120毫秒左右开始,并且对面部配置敏感。在早期和长期潜伏期也发现重复效应。重复目标的N170潜伏期和振幅降低可能是由于感知启动。 N250的重复效果因反面和反面而延迟,这表明延迟访问这些格式的存储的面部表示。在250-300 ms时,前极极正性从300 ms升高到顶壁正离子,这反映了熟悉的“新老”重复效应,对于所有三种脸部类型,其重复幅度都相似,从而准确识别了所有脸部。因此,尽管结构编码因反转和对比度反转而中断,但学习阶段足以消除这些配置操作的行为;这三种面部类型都同样得到了很好的认可,这反映为同样大的顶新旧效果。

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