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Faster, stronger, lateralized: low spatial frequency information supports face processing.

机译:更快,更强大,更侧边:低空间频率信息支持面部处理。

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摘要

Distinct visual pathways are selectively tuned for processing specific spatial frequencies. Recently, Awasthi, Friedman, and Williams (2011) reported fast categorisation of faces at periphery, arguing for primacy of low spatial frequency (LSF) information in face processing. However, previous studies have also documented rapid categorization of places and natural scenes. Here, we tested if the LSF advantage is face specific or also involved in place perception. We used visually guided reaching as a continuous behavioral measure to examine the processing of LSF and high spatial frequency (HSF) hybrids, presented at the periphery. Subjects reached out and touched targets and their movements were recorded. The trajectories revealed that LSF interference was both 95 ms earlier and stronger for faces than places and was lateralized to the left visual field. The early processing of LSF information supports the assumption that faces are prioritised and provides a (neural) framework for such specialised processing.
机译:选择性地调整不同的视觉路径,以处理特定的空间频率。最近,Awasthi,Friedman和Williams(2011)报告了对外围人脸的快速分类,认为在人脸处理中低空间频率(LSF)信息占优势。但是,先前的研究也记录了地点和自然景观的快速分类。在这里,我们测试了LSF的优势是否是针对特定面孔的,还是还涉及到位置感知。我们使用视觉引导到达作为一种连续的行为方式来检查在外围呈现的LSF和高空间频率(HSF)杂种的处理。受试者伸出手并触摸目标,并记录其运动。轨迹显示,LSF干扰的面部比位置早95 ms,而且强度更大,并且偏向左侧视野。 LSF信息的早期处理支持优先考虑面部的假设,并为此类专门处理提供了(神经)框架。

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