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人类后扣带回皮层/顶枕沟在视角启动中的作用。

Role of the human retrosplenial cortex/parieto-occipital sulcus in perspective priming.

机构信息

Department of Psychology, Sapienza Università di Roma, Italy; Laboratory of Neuropsychology, Fondazione Santa Lucia IRCCS, Roma, Italy.

Department of Neuroscience, Imaging and Clinical Sciences, and ITAB, Institute for Advanced Biomedical Technologies, University G. d'Annunzio, Chieti, Italy.

出版信息

Neuroimage. 2016 Jan 15;125:108-119. doi: 10.1016/j.neuroimage.2015.10.040. Epub 2015 Oct 17.

Abstract

The ability to imagine the world from a different viewpoint is a fundamental competence for spatial reorientation and for imagining what another individual sees in the environment. Here, we investigated the neural bases of such an ability using functional magnetic resonance imaging. Healthy participants detected target displacements across consecutive views of a familiar virtual room, either from the perspective of an avatar (primed condition) or in the absence of such a prime (unprimed condition). In the primed condition, the perspective at test always corresponded to the avatar's perspective, while in the unprimed condition it was randomly chosen as 0, 45 or 135deg of viewpoint rotation. We observed a behavioral advantage in performing a perspective transformation during the primed condition as compared to an equivalent amount of unprimed perspective change. Although many cortical regions (dorsal parietal, parieto-temporo-occipital junction, precuneus and retrosplenial cortex/parieto-occipital sulcus or RSC/POS) were involved in encoding and retrieving target location from different perspectives and were modulated by the amount of viewpoint rotation, the RSC/POS was the only area showing decreased activity in the primed as compared to the unprimed condition, suggesting that this region anticipates the upcoming perspective change. The retrosplenial cortex/parieto-occipital sulcus appears to play a special role in the allocentric coding of heading directions.

摘要

从不同视角想象世界的能力是空间重新定向和想象另一个人在环境中看到的东西的基本能力。在这里,我们使用功能磁共振成像研究了这种能力的神经基础。健康参与者在连续观看熟悉的虚拟房间的视图时检测目标位移,无论是从化身的视角(启动条件)还是在没有这种提示的情况下(未启动条件)。在启动条件下,测试时的视角始终对应于化身的视角,而在未启动条件下,它是随机选择 0、45 或 135 度视角旋转的。与等效的未启动视角变化相比,我们在启动条件下执行视角转换时观察到行为上的优势。尽管许多皮质区域(背侧顶叶、顶枕颞叶联合区、楔前叶和后扣带回/顶枕沟或 RSC/POS)参与了从不同视角编码和检索目标位置,并且受到视角旋转量的调节,但只有 RSC/POS 在启动时比未启动时表现出活动减少,表明该区域预测即将到来的视角变化。后扣带回/顶枕沟似乎在头方向的无参照编码中发挥特殊作用。

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