Face perception is often characterized as depending on configural, rather than part-based, processing. Here we examined the relative contributions of configuration and parts to early "face-selective" processing at the M170, a magnetoencephalographic response approximately 170 ms after stimulus onset, using adaptation. Previously (Harris and Nakayama 2007), we showed that rapid successive presentation of 2 stimuli (stimulus-onset asynchrony < 800 ms) attenuates the M170 response. Such adaptation is face-selective, with greater attenuation when faces are preceded by other faces than by houses. This technique therefore provides an independent method to assess the nature of this early neurophysiological marker. In these experiments, we measured the adapting power of face configurations versus parts using upright and inverted faces (Experiment 1), face-like configurations of black ovals versus scrambled nonface configurations of face parts (Experiment 2), and isolated face parts (Experiment 3). Although face configurations alone do not produce face-selective adaptation, scrambled and even isolated face parts adapt the M170 response to a similar extent as full faces. Thus, at least for the relatively early face-selective M170 response, face parts produce face-selective adaptation but face configurations do not. These results suggest that face parts are important at relatively early stages of face perception.

译文

面部感知通常被描述为依赖于配置,而不是基于部分的处理。在这里,我们使用适应检查了M170的配置和零件对早期 “面部选择性” 处理的相对贡献,M170是刺激开始后约170 ms的脑磁图响应。以前 (Harris和Nakayama 2007),我们显示了2个刺激的快速连续呈现 (刺激开始异步 <800 ms) 减弱了M170反应。这种适应是面部选择性的,当面部前面有其他面部而不是房屋时,衰减更大。因此,该技术提供了一种独立的方法来评估这种早期神经生理学标记物的性质。在这些实验中,我们测量了面部配置与使用直立和倒置面部的零件的适应性 (实验1),黑色椭圆形的面部配置与面部部分的加扰的非面部配置 (实验2) 以及孤立的面部部分 (实验3)。尽管单独的面部配置不会产生面部选择性适应,但加扰甚至孤立的面部部件使M170响应适应的程度与全面部相似。因此,至少对于相对早期的面部选择性M170响应,面部部分产生面部选择性适应,但面部配置不会。这些结果表明,面部部分在面部感知的相对早期阶段很重要。

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