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面孔中高低空间频率信息的不同及趋同视觉处理

Distinct and convergent visual processing of high and low spatial frequency information in faces.

作者信息

Rotshtein Pia, Vuilleumier Patrik, Winston Joel, Driver Jon, Dolan Ray

机构信息

Behavioural Brain Science Centre, School of Psychology, University of Birmingham, Edgbaston, Birmingham, UK.

出版信息

Cereb Cortex. 2007 Nov;17(11):2713-24. doi: 10.1093/cercor/bhl180. Epub 2007 Feb 5.

Abstract

We tested for differential brain response to distinct spatial frequency (SF) components in faces. During a functional magnetic resonance imaging experiment, participants were presented with "hybrid" faces containing superimposed low and high SF information from different identities. We used a repetition paradigm where faces at either SF range were independently repeated or changed across consecutive trials. In addition, we manipulated which SF band was attended. Our results suggest that repetition and attention affected partly overlapping occipitotemporal regions but did not interact. Changes of high SF faces increased responses of the right inferior occipital gyrus (IOG) and left inferior temporal gyrus (ITG), with the latter response being also modulated additively by attention. In contrast, the bilateral middle occipital gyrus (MOG) responded to repetition and attention manipulations of low SF. A common effect of high and low SF repetition was observed in the right fusiform gyrus (FFG). Follow-up connectivity analyses suggested direct influence of the MOG (low SF), IOG, and ITG (high SF) on the FFG responses. Our results reveal that different regions within occipitotemporal cortex extract distinct visual cues at different SF ranges in faces and that the outputs from these separate processes project forward to the right FFG, where the different visual cues may converge.

摘要

我们测试了大脑对面部不同空间频率(SF)成分的差异反应。在功能磁共振成像实验中,向参与者呈现包含来自不同身份的低空间频率和高空间频率信息叠加的“混合”面孔。我们采用了一种重复范式,在连续试验中,两个空间频率范围内的面孔会独立重复或变化。此外,我们还操控了所关注的空间频率波段。我们的研究结果表明,重复和注意力影响了部分重叠的枕颞区域,但二者没有相互作用。高空间频率面孔的变化增加了右侧枕下回(IOG)和左侧颞下回(ITG)的反应,后者的反应也受到注意力的叠加调制。相比之下,双侧枕中回(MOG)对低空间频率的重复和注意力操控有反应。在右侧梭状回(FFG)观察到高空间频率和低空间频率重复的共同效应。后续的连通性分析表明,枕中回(低空间频率)、枕下回和颞下回(高空间频率)对梭状回的反应有直接影响。我们的研究结果揭示,枕颞叶皮质内的不同区域在不同空间频率范围内提取面部不同的视觉线索,并且这些独立过程的输出向前投射到右侧梭状回,不同的视觉线索可能在此汇聚。

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