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首页> 外文期刊>Journal of Neurophysiology >Face categorization in visual scenes may start in a higher order area of the right fusiform gyrus: evidence from dynamic visual stimulation in neuroimaging.
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Face categorization in visual scenes may start in a higher order area of the right fusiform gyrus: evidence from dynamic visual stimulation in neuroimaging.

机译:视觉场景中的面部分类可能始于右梭状回的更高阶区域:神经影像中动态视觉刺激的证据。

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How a visual stimulus is initially categorized as a face by the cortical face-processing network remains largely unclear. In this study we used functional MRI to study the dynamics of face detection in visual scenes by using a paradigm in which scenes containing faces or cars are revealed progressively as they emerge from visual noise. Participants were asked to respond as soon as they detected a face or car during the noise sequence. Among the face-sensitive regions identified based on a standard localizer, a high-level face-sensitive area, the right fusiform face area (FFA), showed the earliest difference between face and car activation. Critically, differential activation in FFA was observed before differential activation in the more posteriorly located occipital face area (OFA). A whole brain analysis confirmed these findings, with a face-sensitive cluster in the right fusiform gyrus being the only cluster showing face preference before successful behavioral detection. Overall, these findings indicate that following generic low-level visual analysis, a face stimulus presented in a gradually revealed visual scene is first detected in the right middle fusiform gyrus, only after which further processing spreads to a network of cortical and subcortical face-sensitive areas (including the posteriorly located OFA). These results provide further evidence for a nonhierarchical organization of the cortical face-processing network.
机译:皮质面部处理网络最初如何将视觉刺激归类为面部仍然不清楚。在这项研究中,我们使用功能性MRI通过使用范式来研究视觉场景中人脸检测的动力学,在这种范式中,包含人脸或汽车的场景从视觉噪声中逐渐显现出来。在噪音序列中,要求参与者在检测到面部或汽车后立即做出回应。在基于标准定位器识别的面部敏感区域中,高级面部敏感区域(右梭形面部区域(FFA))显示出面部和汽车激活之间的最早差异。至关重要的是,观察到FFA中的差异激活,然后才在枕后面部区域(OFA)中进行差异激活。整个大脑的分析证实了这些发现,其中在右梭状回中的面部敏感簇是唯一在成功进行行为检测之前显示出面部偏好的簇。总体而言,这些发现表明,在进行了一般性的低级视觉分析之后,首先在右中梭状回中检测到了逐渐显露的视觉场景中出现的面部刺激,然后进一步处理扩展到了皮质和皮质下面部敏感网络区域(包括后部的OFA)。这些结果为皮质面部处理网络的非分层组织提供了进一步的证据。

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