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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.全场景比特写场景和海马旁回及压后皮质中的场景诊断性物体产生更多激活:一项功能磁共振成像研究。
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A brief thought can modulate activity in extrastriate visual areas: Top-down effects of refreshing just-seen visual stimuli.一个简短的想法可以调节纹外视觉区域的活动:刷新刚看到的视觉刺激的自上而下的效应。
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Where am I now? Distinct roles for parahippocampal and retrosplenial cortices in place recognition.我现在在哪里?海马旁回和压后皮质在位置识别中的不同作用。
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Beyond the edges of a view: boundary extension in human scene-selective visual cortex.视野边缘之外:人类场景选择性视觉皮层中的边界扩展
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Retrosplenial and hippocampal brain regions in human navigation: complementary functional contributions to the formation and use of cognitive maps.人类导航中的 retrosplenial 和海马体脑区:对认知地图形成和使用的互补功能贡献。
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Differential parahippocampal and retrosplenial involvement in three types of visual scene recognition.海马旁回和压后皮质在三种视觉场景识别中的差异参与情况
Cereb Cortex. 2007 Jul;17(7):1680-93. doi: 10.1093/cercor/bhl079. Epub 2006 Sep 22.
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A temporal same-object advantage in the tunnel effect: facilitated change detection for persisting objects.隧道效应中的时间同对象优势:持久对象的变化检测更容易
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10
Retrosplenial cortex lesions impair water maze strategies learning or spatial place learning depending on prior experience of the rat.压后皮质损伤会根据大鼠先前的经验损害水迷宫策略学习或空间位置学习。
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海马旁回位置区(PPA)和压后皮质(RSC)在全景场景感知中的不同作用。

Different roles of the parahippocampal place area (PPA) and retrosplenial cortex (RSC) in panoramic scene perception.

作者信息

Park Soojin, Chun Marvin M

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Neuroimage. 2009 Oct 1;47(4):1747-56. doi: 10.1016/j.neuroimage.2009.04.058. Epub 2009 May 4.

DOI:10.1016/j.neuroimage.2009.04.058
PMID:19398014
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2753672/
Abstract

Constructing a rich and continuous visual experience requires computing specific details across views as well as integrating similarities across views. In this paper, we report functional magnetic resonance imaging (fMRI) evidence that these distinct computations may occur in two scene-sensitive regions in the brain, the parahippocampal place area (PPA) and retrosplenial cortex (RSC). Participants saw different snapshot views from panoramic scenes, which represented clearly different views, but appeared to come from the same scene. Using fMRI adaptation, we tested whether the PPA and RSC treated these panoramic views as the same or different. In the panoramic condition, three different views from a single panoramic scene were presented. We did not find any attenuation for panoramic repeats in the PPA, showing viewpoint-specificity. In contrast, RSC showed significant attenuation for the panoramic condition, showing viewpoint-integration. However, when the panoramic views were not presented in a continuous way, both the specificity in the PPA and the integration in RSC were lost. These results demonstrate that the PPA and RSC compute different properties of scenes: the PPA focuses on selective discrimination of different views while RSC focuses on the integration of scenes under the same visual context. These complementary functions of the PPA and RSC enable both specific and integrative representations of scenes across several viewpoints.

摘要

构建丰富且连贯的视觉体验需要计算不同视图间的特定细节,并整合视图间的相似性。在本文中,我们报告了功能磁共振成像(fMRI)的证据,表明这些不同的计算可能发生在大脑中两个对场景敏感的区域,即海马旁回位置区(PPA)和压后皮质(RSC)。参与者观看了全景场景中的不同快照视图,这些视图代表明显不同的视角,但似乎来自同一场景。使用fMRI适应技术,我们测试了PPA和RSC是将这些全景视图视为相同还是不同。在全景条件下,呈现了来自单个全景场景的三个不同视图。我们在PPA中未发现全景重复的任何衰减,显示出视角特异性。相比之下,RSC在全景条件下显示出显著衰减,表明视角整合。然而,当全景视图不是以连续方式呈现时,PPA中的特异性和RSC中的整合都消失了。这些结果表明,PPA和RSC计算场景的不同属性:PPA专注于对不同视图的选择性辨别,而RSC专注于在相同视觉背景下对场景的整合。PPA和RSC的这些互补功能使得能够跨多个视角对场景进行特定和整合的表征。