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Eye-centered encoding of visual space in scene-selective regions

机译:以场现场选择区域中的视觉空间的居中编码

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We used functional magnetic resonance imaging (fMRI) to investigate the reference frames used to encode visual information in scene-responsive cortical regions. At early levels of the cortical visual hierarchy, neurons possess spatially selective receptive fields (RFs) that are yoked to specific locations on the retina. In lieu of this eye-centered organization, we speculated that visual areas implicated in scene processing, such as the parahippocampal place area (PPA), the retrosplenial complex (RSC), and transverse occipital sulcus (TOS) might instead possess RFs defined in head-, body-, or world-centered reference frames. To test this, we scanned subjects while they viewed objects and scenes presented at four screen locations while they maintained fixation at one of three possible gaze positions. We then examined response profiles as a function of either fixation-referenced or screen-referenced position. Contrary to our prediction, the PPA and TOS exhibited positiona??response curves that moved with the fixation point rather than being anchored to the screen, a pattern indicative of eye-centered encoding. RSC, on the other hand, did not exhibit a positiona??response curve in either reference frame. By showing an important commonality between the PPA/TOS and other visually responsive regions, the results emphasize the critical involvement of these regions in the visual analysis of scenes.
机译:我们使用功能磁共振成像(FMRI)来研究用于在场景响应的皮质区域中编码视觉信息的参考帧。在皮质视觉层次结构的早期水平,神经元具有空间选择性的接受领域(RFS),其被轭上视网膜上的特定位置。代替这种以灵活的组织,我们推测了在场景处理中涉及的视觉区域,例如PARAHIPPocampal Place区域(PPA),逆血分比综合复合物(RSC)和横向焦结(TOS)可以在头部中定义RFS - ,身体或以世界为中心的参考框架。为了测试这一点,我们在观看在四个屏幕位置的对象和场景时扫描主题,同时在三种可能的凝视位置之一保持固定。然后,我们将响应简档检查为固定引用或屏幕引用位置的函数。与我们的预测相反,PPA和TOS显示出与固定点移动而不是锚定到屏幕的响应曲线,这是指指示以眼居中编码的图案。另一方面,RSC在参考帧中没有表现出响应曲线。通过在PPA / TOS和其他视觉上响应区域之间显示重要的共性,结果强调了这些区域在场景的视觉分析中的关键累积。

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