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Localization of cortical activity associated with visual recognition in humans.

机译:与人类视觉识别相关的皮层活动的本地化。

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摘要

The Laplacian analysis described previously is used to localize cortical activity subserving visual object recognition in humans. In the first of two experiments, subjects are shown pictures of a human face corrupted by varying amounts of noise. After each picture has been presented for 34 ms against a large uniformly illuminated background, the subject is required to report whether or not he saw the face, by pressing a button. The Laplacian response associated with the report that the face is seen differs from that associated with the report that the face is not seen. The difference between these two Laplacian responses has a simple wave form with peak activity at approximately 206 ms after stimulus onset and approximately 196 ms before median reaction time for the button-press report. Its amplitude and polarity, which vary with centre-electrode location over the posterior scalp, are used to construct a map showing the location of cortical activity subserving recognition of the face. This cortical activity localizes to both temporal lobes with some degree of right hemispheric lateralization in right-handed subjects. In the second of the two experiments, subjects are shown the silhouette of a simple shape, such as a triangle, embedded in a large random dot field. Each silhouette is presented for 17 ms. The visibility of the shape is made to vary from trial to trial and the subject is required to report for each trial whether or not the shape is seen. The Laplacian response associated with the report that no shape is seen is very much smaller than that correctly identifying the shape. The difference between these two Laplacian responses has a simple wave form with peak activity at approximately 207 ms after stimulus onset. Its wave form is essentially the same as that associated with face recognition. Its amplitude and polarity, which vary with centre-electrode location over the posterior scalp, are used to construct a map showing the location of cortical activity subserving recognition of the simple shape. This cortical activity localizes to both temporal lobes with strong right hemispheric lateralization in right-handed subjects. The general topography of this activity is similar to that subserving face recognition. Although generally similar, there are measurable differences between the topographies of right temporal lobe activity associated with face recognition and that associated with simple shape recognition.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:先前描述的拉普拉斯分析用于定位皮层活动,从而维护人类的视觉对象识别。在两个实验的第一个实验中,向被摄对象显示了一张人脸的图片,这些人的脸被不同数量的噪音破坏了。在以大面积均匀照明的背景将每张图片呈现34毫秒之后,要求对象通过按下按钮报告他是否看到了脸部。与看到脸部的报告相关联的拉普拉斯响应与与没有看到脸部的报告相关联的拉普拉斯响应。这两个拉普拉斯响应之间的差异具有简单的波形,在刺激发生后大约206毫秒和按钮按下报告的中值反应时间之前的大约196毫秒处具有峰值活动。其幅度和极性随后头皮上中心电极位置的变化而变化,用于构建显示皮层活动位置的图,该图有助于面部识别。在右撇子受试者中,这种皮质活动定位于两个颞叶,并具有一定程度的右半球偏侧化。在这两个实验的第二个实验中,向对象显示嵌入大随机点场中的简单形状(例如三角形)的轮廓。每个轮廓显示17 ms。使形状的可见性因试验而异,并且要求受试者为每次试验报告是否看到该形状。与报告相关的拉普拉斯算子没有看到任何形状的响应比正确识别该形状的响应小得多。这两个拉普拉斯响应之间的差异具有简单的波形,在刺激发作后约207 ms处具有峰值活动。它的波形基本上与面部识别相关。其幅度和极性随后头皮上中心电极位置的变化而变化,用于构建显示皮层活动位置的图,从而有助于对简单形状的识别。这种皮层活动局限于右撇子受试者的两个颞叶,右半球偏侧性强。此活动的一般地形类似于保留人脸识别的地形。尽管大致相似,但与人脸识别相关的右颞叶活动的地形与与简单形状识别相关的地形之间存在可测量的差异。(摘要截断为400个单词)

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