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首页> 外文期刊>The European Journal of Neuroscience >Early processing in the human lateral occipital complex is highly responsive to illusory contours but not to salient regions.
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Early processing in the human lateral occipital complex is highly responsive to illusory contours but not to salient regions.

机译:人类枕骨外侧复合体的早期处理对虚幻的轮廓具有高度响应,但对显着区域却没有响应。

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摘要

Human electrophysiological studies support a model whereby sensitivity to so-called illusory contour stimuli is first seen within the lateral occipital complex. A challenge to this model posits that the lateral occipital complex is a general site for crude region-based segmentation, based on findings of equivalent hemodynamic activations in the lateral occipital complex to illusory contour and so-called salient region stimuli, a stimulus class that lacks the classic bounding contours of illusory contours. Using high-density electrical mapping of visual evoked potentials, we show that early lateral occipital cortex activity is substantially stronger to illusory contour than to salient region stimuli, whereas later lateral occipital complex activity is stronger to salient region than to illusory contour stimuli. Our results suggest that equivalent hemodynamic activity to illusory contour and salient region stimuli probably reflects temporally integrated responses, a result of the poor temporal resolution of hemodynamic imaging. The temporal precision of visual evoked potentials is critical for establishing viable models of completion processes and visual scene analysis. We propose that crude spatial segmentation analyses, which are insensitive to illusory contours, occur first within dorsal visual regions, not the lateral occipital complex, and that initial illusory contour sensitivity is a function of the lateral occipital complex.
机译:人类电生理学研究支持一种模型,该模型首先在枕骨外侧复合体中发现对所谓的虚幻轮廓刺激的敏感性。该模型的挑战在于,根据枕骨外侧复合物中的血液动力学激活等效于虚幻轮廓和所谓的显着区域刺激(缺乏的刺激类别),枕骨外侧复合体是基于粗略区域分割的一般部位虚构轮廓的经典边界轮廓。使用视觉诱发电位的高密度电映射,我们显示早期枕叶外侧皮质的活动对虚假轮廓要比对显着区域刺激显着强,而后期枕叶外侧复合体活动对显着区域的轮廓要比对虚幻轮廓刺激强。我们的结果表明,与虚幻轮廓线和显着区域刺激等效的血液动力学活动可能反映了时间积分反应,这是血液动力学成像时间分辨率差的结果。视觉诱发电位的时间精度对于建立完成过程和视觉场景分析的可行模型至关重要。我们提出,对幻觉轮廓不敏感的粗略空间分割分析首先出现在背侧视觉区域而不是枕骨外侧复合体中,并且初始幻觉轮廓敏感性是枕骨外侧复合体的函数。

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