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When moving faces activate the house area: an fMRI study of object-file retrieval

机译:当移动面部激活房屋区域时:对目标文件检索的功能磁共振成像研究

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Background The visual cortex of the human brain contains specialized modules for processing different visual features of an object. Confronted with multiple objects, the system needs to attribute the correct features to each object (often referred to as 'the binding problem'). The brain is assumed to integrate the features of perceived objects into object files – pointers to the neural representations of these features, which outlive the event they represent in order to maintain stable percepts of objects over time. It has been hypothesized that a new encounter with one of the previously bound features will reactivate the other features in the associated object file according to a kind of pattern-completion process. Methods Fourteen healthy volunteers participated in an fMRI experiment and performed a task designed to measure the aftereffects of binding visual features (houses, faces, motion direction). On each trial, participants viewed a particular combination of features (S1) before carrying out a speeded choice response to a second combination of features (S2). Repetition and alternation of all three features was varied orthogonally. Results The behavioral results showed the standard partial repetition costs: a reaction time increase when one feature was repeated and the other feature alternated between S1 and S2, as compared to complete repetitions or alternations of these features. Importantly, the fMRI results provided evidence that repeating motion direction reactivated the object that previously moved in the same direction. More specifically, perceiving a face moving in the same direction as a just-perceived house increased activation in the parahippocampal place area (PPA). A similar reactivation effect was not observed for faces in the fusiform face area (FFA). Individual differences in the size of the reactivation effects in the PPA and FFA showed a positive correlation with the corresponding partial repetition costs. Conclusion Our study provides the first neural evidence that features are bound together on a single presentation and that reviewing one feature automatically reactivates the features that previously accompanied it.
机译:背景技术人脑的视觉皮层包含用于处理对象的不同视觉特征的专用模块。面对多个对象,系统需要为每个对象赋予正确的特征(通常称为“绑定问题”)。假定大脑将感知到的对象的特征整合到对象文件中-指向这些特征的神经表示的指针,这些指针在它们所代表的事件之后就不再存在,以便随着时间的推移保持对象的稳定感知。已经假设,根据一种模式完成过程,与先前绑定特征之一的新相遇将重新激活关联对象文件中的其他特征。方法14名健康志愿者参加了功能磁共振成像实验,并执行了一项旨在测量结合视觉特征(房屋,面部,运动方向)的后效应的任务。在每个试验中,参与者在对第二个特征组合(S2)进行快速选择响应之前,先查看了特征的特定组合(S1)。这三个特征的重复和交替正交变化。结果行为结果显示了标准的部分重复成本:与完全重复或替代这些功能相比,一个功能重复时,另一功能在S1和S2之间交替时,反应时间增加。重要的是,fMRI结果提供了重复运动方向重新激活先前沿相同方向移动的对象的证据。更具体地,感知到与刚感觉到的房屋在相同方向上移动的面部增加了在海马旁区域(PPA)中的激活。对于梭形面部区域(FFA)中的面部未观察到类似的活化效果。 PPA和FFA中重新激活效应大小的个体差异与相应的部分重复成本呈正相关。结论我们的研究提供了第一个神经证据,即功能在单个演示文稿上绑定在一起,并且审阅一个功能会自动重新激活以前伴随它的功能。

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