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The representation of space in the brain
被引:126
|作者:
Grieves, Roddy M.
[1
]
Jeffery, Kate J.
[1
]
机构:
[1] UCL, Inst Behav Neurosci, Dept Expt Psychol, London, England
基金:
英国惠康基金;
英国生物技术与生命科学研究理事会;
关键词:
Spatial cognition;
Navigation;
Place cell;
Grid cell;
Head direction cell;
HEAD-DIRECTION CELLS;
HIPPOCAMPAL PLACE CELLS;
MEDIAL ENTORHINAL CORTEX;
FREELY-MOVING RATS;
COMPLEX-SPIKE CELLS;
POSTERIOR PARIETAL CORTEX;
SPATIAL VIEW CELLS;
POSITIONAL FIRING PROPERTIES;
ANTERIOR CINGULATE CORTEX;
SINGLE-UNIT-ACTIVITY;
D O I:
10.1016/j.beproc.2016.12.012
中图分类号:
B84 [心理学];
学科分类号:
04 ;
0402 ;
摘要:
Animals can navigate vast distances and often display behaviours or activities that indicate a detailed, internal spatial representation of their surrounding environment or a 'cognitive map'. Over a century of behavioural research on spatial navigation in humans and animals has greatly increased our understanding of how this highly complex feat is achieved. In turn this has inspired half a century of electrophysiological spatial navigation and memory research which has further advanced our understanding of the brain. In particular, three functional cell types have been suggested to underlie cognitive mapping processes; place cells, head direction cells and grid cells. However, there are numerous other spatially modulated neurons in the brain. For a more complete understanding of the electrophysiological systems and behavioural processes underlying spatial navigation we must also examine these lesser understood neurons. In this review we will briefly summarise the literature surrounding place cells, head direction cells, grid cells and the evidence that these cells collectively form the neural basis of a cognitive map. We will then review literature covering many other spatially modulated neurons in the brain that perhaps further augment this cognitive map. (C) 2016 Elsevier B.V. All rights reserved.
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页码:113 / 131
页数:19
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