Kahn David Alexander, Harris Alison M, Wolk David A, Aguirre Geoffrey Karl
Department of Neurology, University of Pennsylvania, Philadelphia, PA 19104, USA.
J Vis. 2010 Aug 16;10(10):12. doi: 10.1167/10.10.12.
Psychological models suggest that perceptual similarity can be divided into geometric effects, such as metric distance in stimulus space, and non-geometric effects, such as stimulus-specific biases. We investigated the neural and temporal separability of these effects in a carry-over, event-related potential (ERP) study of facial similarity. By testing this dual effects model against a temporal framework of visual evoked components, we demonstrate that the behavioral distinction between geometric and non-geometric similarity effects is consistent with dissociable neural responses across the time course of face perception. We find an ERP component between the "face-selective" N170 and N250 responses (the "P200") that is modulated by transitions of face appearance, consistent with neural adaptation to the geometric similarity of face transitions. In contrast, the N170 and N250 reflect non-geometric stimulus bias, with different degrees of neural adaptation dependent upon the direction of transition within the stimulus space. These results suggest that the neural coding of perceptual similarity, in terms of both geometric and non-geometric representations, occurs rapidly and from relatively early in the perceptual processing stream.
心理学模型表明,知觉相似性可分为几何效应,如刺激空间中的度量距离,以及非几何效应,如特定刺激偏差。我们在一项关于面部相似性的事件相关电位(ERP)延续性研究中,调查了这些效应在神经和时间上的可分离性。通过在视觉诱发电位成分的时间框架内测试这个双重效应模型,我们证明了几何和非几何相似性效应之间的行为差异与面部感知时间过程中可分离的神经反应是一致的。我们在“面部选择性”N170和N250反应之间发现了一个ERP成分(“P200”),它受面部外观变化的调节,这与对面部变化几何相似性的神经适应一致。相比之下,N170和N250反映了非几何刺激偏差,其神经适应程度不同取决于刺激空间内变化的方向。这些结果表明,知觉相似性的神经编码,无论是几何表征还是非几何表征,都在知觉处理流中相对较早的阶段迅速发生。