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Face-specific processing in the human fusiform gyrus.人类梭状回的面孔特异性加工。
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Electrophysiological Studies of Face Perception in Humans.人类面部感知的电生理研究
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The representations of spacing and part-based information are associated for upright faces but dissociated for objects: evidence from individual differences.间距和基于部分的信息表征在直立面孔上是相关联的,但在物体上是分离的:来自个体差异的证据。
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The representation of parts and wholes in face-selective cortex.面孔选择性皮层中局部与整体的表征。
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Dissociable roles of the superior temporal sulcus and the intraparietal sulcus in joint attention: a functional magnetic resonance imaging study.颞上沟和顶内沟在共同注意中的不同作用:一项功能磁共振成像研究
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Individual faces elicit distinct response patterns in human anterior temporal cortex.个体面孔在人类颞叶前部皮层引发不同的反应模式。
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TMS evidence for the involvement of the right occipital face area in early face processing.经颅磁刺激(TMS)证据表明右侧枕叶面部区域参与早期面部加工。
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对面部各部分和面部整体的感知:一项 fMRI 研究。

Perception of face parts and face configurations: an FMRI study.

机构信息

Beijing Normal University, Beijing, China.

出版信息

J Cogn Neurosci. 2010 Jan;22(1):203-11. doi: 10.1162/jocn.2009.21203.

DOI:10.1162/jocn.2009.21203
PMID:19302006
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2888696/
Abstract

fMRI studies have reported three regions in human ventral visual cortex that respond selectively to faces: the occipital face area (OFA), the fusiform face area (FFA), and a face-selective region in the superior temporal sulcus (fSTS). Here, we asked whether these areas respond to two first-order aspects of the face argued to be important for face perception, face parts (eyes, nose, and mouth), and the T-shaped spatial configuration of these parts. Specifically, we measured the magnitude of response in these areas to stimuli that (i) either contained real face parts, or did not, and (ii) either had veridical face configurations, or did not. The OFA and the fSTS were sensitive only to the presence of real face parts, not to the correct configuration of those parts, whereas the FFA was sensitive to both face parts and face configuration. Further, only in the FFA was the response to configuration and part information correlated across voxels, suggesting that the FFA contains a unified representation that includes both kinds of information. In combination with prior results from fMRI, TMS, MEG, and patient studies, our data illuminate the functional division of labor in the OFA, FFA, and fSTS.

摘要

功能性磁共振成像研究报告称,人类腹侧视觉皮层中有三个区域对人脸有选择性反应:枕部面区(OFA)、梭状回面部区(FFA)和颞上沟中的面部选择区(fSTS)。在这里,我们想知道这些区域是否对被认为对面部感知很重要的两个面部的一级特征做出反应,即面部各部分(眼睛、鼻子和嘴巴)以及这些部分的 T 形空间结构。具体来说,我们测量了这些区域对刺激的反应程度,这些刺激(i)要么包含真实的面部部分,要么不包含,(ii)要么具有真实的面部结构,要么不具有。OFA 和 fSTS 仅对面部真实部分的存在敏感,而对面部部分的正确配置不敏感,而 FFA 对人脸部分和面部结构都敏感。此外,只有在 FFA 中,配置和部分信息的反应在体素之间是相关的,这表明 FFA 包含了一种统一的表示,其中包括这两种信息。结合来自 fMRI、TMS、MEG 和患者研究的先前结果,我们的数据阐明了 OFA、FFA 和 fSTS 中的功能分工。