Save Etienne, Poucet Bruno
Laboratory of Neurobiology and Cognition, UMR 6155, Aix-Marseille Université, CNRS, Marseille, France.
Neurobiol Learn Mem. 2009 Feb;91(2):172-8. doi: 10.1016/j.nlm.2008.08.005. Epub 2008 Sep 26.
The processing of spatial information in the brain requires a network of structures within which the hippocampus plays a prominent role by elaborating an allocentric representation of space. The parietal cortex has long been suggested to have a complementary function. An overview of lesion and unit recording data in the rat indicates that the parietal cortex is involved in different aspects of spatial information processing including allocentric and egocentric processing. More specifically, the data suggest that the parietal cortex plays a fundamental role in combining visual and motion information, a process that would be important for an egocentric-to-allocentric transformation process. Furthermore, the parietal cortex may also have a role in the long-term storage of representation although this possibility needs further evidence. The data overall show that the parietal cortex occupies a unique position in the brain at the interface of perception and representation.
大脑中空间信息的处理需要一个结构网络,其中海马体通过构建空间的非自我中心表征发挥着突出作用。长期以来,人们一直认为顶叶皮层具有互补功能。对大鼠损伤和单位记录数据的概述表明,顶叶皮层参与空间信息处理的不同方面,包括非自我中心和自我中心处理。更具体地说,数据表明顶叶皮层在整合视觉和运动信息方面发挥着基本作用,这一过程对于从自我中心到非自我中心的转换过程很重要。此外,顶叶皮层可能在表征的长期存储中也发挥作用,尽管这一可能性需要进一步的证据。总体数据表明,顶叶皮层在大脑中处于感知与表征界面的独特位置。