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Full Scenes produce more activation than Close-up Scenes and Scene-Diagnostic Objects in parahippocampal and retrosplenial cortex: An fMRI study

机译:fMRI研究显示,在海马旁和脾后皮质中,全场景比特写场景和场景诊断对象产生更多的激活

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We used fMRI to directly compare activation in two cortical regions previously identified as relevant to real-world scene processing: retrosplenial cortex and a region of posterior parahippocampal cortex functionally defined as the parahippocampal place area (PPA). We compared activation in these regions to full views of scenes from a global perspective, close-up views of sub-regions from the same scene category, and single objects highly diagnostic of that scene category. Faces were included as a control condition. Activation in parahippocampal place area was greatest for full scene views that explicitly included the 3D spatial structure of the environment, with progressively less activation for close-up views of local scene regions containing diagnostic objects but less explicitly depicting 3D scene geometry, followed by single scene-diagnostic objects. Faces did not activate parahippocampal place area. In contrast, activation in retrosplenial cortex was greatest for full scene views, and did not differ among close-up views, diagnostic objects, and faces. The results showed that parahippocampal place area responds in a graded fashion as images become more completely scene-like and include more explicit 3D structure, whereas retrosplenial cortex responds in a step-wise manner to the presence of a complete scene. These results suggest scene processing areas are particularly sensitive to the 3D geometric structure that distinguishes scenes from other types of complex and meaningful visual stimuli.
机译:我们使用功能磁共振成像直接比较了先前确定为与真实世界场景处理相关的两个皮质区域的激活:脾后皮质和功能性定义为海马旁区域(PPA)的后海马旁皮质区域。我们从全局角度比较了这些区域中的激活与场景的完整视图,同一场景类别的子区域的特写视图以及对该场景类别进行高度诊断的单个对象。将面部作为对照条件。对于明确包含环境3D空间结构的完整场景视图,在海马旁区域的激活效果最大,对于包含诊断对象的局部场景区域的近景视图,激活程度逐渐降低,但对3D场景几何图形的描绘则更少,随后是单个场景-诊断对象。脸部未激活海马旁区域。相反,对于全场景视图,脾后皮质的激活最大,并且在特写视图,诊断对象和面部之间没有差异。结果表明,随着图像变得更完全像场景并且包括更明确的3D结构,海马旁区域以渐变的方式响应,而脾后皮质则逐步响应完整场景的存在。这些结果表明,场景处理区域对将场景与其他类型的复杂且有意义的视觉刺激区分开的3D几何结构特别敏感。

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