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以自我为中心和以他者为中心的空间参照系的神经基础。

The neural basis of the egocentric and allocentric spatial frame of reference.

作者信息

Zaehle Tino, Jordan Kirsten, Wüstenberg Torsten, Baudewig Jürgen, Dechent Peter, Mast Fred W

机构信息

Department of Psychology, Division Neuropsychology, University of Zurich, Binzmühlestrasse 14, CH-8050 Zürich, Switzerland.

出版信息

Brain Res. 2007 Mar 16;1137(1):92-103. doi: 10.1016/j.brainres.2006.12.044. Epub 2006 Dec 21.

Abstract

The present study examines the functional and anatomical underpinnings of egocentric and allocentric coding of spatial coordinates. For this purpose, we set up a functional magnet resonance imaging experiment using verbal descriptions of spatial relations either with respect to the listener (egocentric) or without any body-centered relations (allocentric) to induce the two different spatial coding strategies. We aimed to identify and distinguish the neuroanatomical correlates of egocentric and allocentric spatial coding without any possible influences by visual stimulation. Results from sixteen participants show a general involvement of a bilateral fronto-parietal network associated with spatial information processing. Furthermore, the egocentric and allocentric conditions gave rise to activations in primary visual areas in both hemispheres. Moreover, data show separate neural circuits mediating different spatial coding strategies. While egocentric spatial coding mainly recruits the precuneus, allocentric coding of space activates a network comprising the right superior and inferior parietal lobe and the ventrolateral occipito-temporal cortex bilaterally. Furthermore, bilateral hippocampal involvement was observed during allocentric, but not during egocentric spatial processing. Our results demonstrate that the processing of egocentric spatial relations is mediated by medial superior-posterior areas, whereas allocentric spatial coding requires an additional involvement of right parietal cortex, the ventral visual stream and the hippocampal formation. These data suggest that a hierarchically organized processing system exists in which the egocentric spatial coding requires only a subsystem of the processing resources of the allocentric condition.

摘要

本研究考察了空间坐标自我中心编码和他我中心编码的功能及解剖学基础。为此,我们开展了一项功能磁共振成像实验,使用关于空间关系的语言描述,这些描述要么是相对于听者的(自我中心),要么是没有任何以身体为中心的关系的(他我中心),以诱导两种不同的空间编码策略。我们旨在识别和区分自我中心和他我中心空间编码的神经解剖学关联,且不受视觉刺激的任何可能影响。16名参与者的结果显示,一个与空间信息处理相关的双侧额顶网络普遍参与其中。此外,自我中心和他我中心条件均在两个半球的初级视觉区域引发了激活。而且,数据显示存在介导不同空间编码策略的独立神经回路。自我中心空间编码主要激活楔前叶,而空间的他我中心编码则激活一个由右侧顶叶上下叶以及双侧枕颞叶腹外侧皮质组成的网络。此外,在他我中心空间处理过程中观察到双侧海马体参与,但在自我中心空间处理过程中未观察到。我们的结果表明,自我中心空间关系的处理由内侧上后部区域介导,而他我中心空间编码需要右侧顶叶皮质、腹侧视觉通路和海马结构的额外参与。这些数据表明存在一个分层组织的处理系统,其中自我中心空间编码仅需要他我中心条件下处理资源的一个子系统。

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