Parallel striatal and hippocampal systems for landmarks and boundaries in spatial memory

被引:421
作者
Doeller, Christian F. [1 ]
King, John A. [1 ]
Burgess, Neil [1 ]
机构
[1] UCL, Inst Cognit Neurosci, London WC1B 3AR, England
基金
英国医学研究理事会; 英国生物技术与生命科学研究理事会;
关键词
cognitive map; functional MRI; incidental; learning; procedural;
D O I
10.1073/pnas.0801489105
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
How the memory systems centered on the hippocampus and dorsal striatum interact to support behavior remains controversial. We used functional MRI while people learned the locations of objects by collecting and replacing them over multiple trials within a virtual environment comprising a landmark, a circular boundary, and distant cues for orientation. The relative location of landmark and boundary was occasionally changed, with specific objects paired with one or other cue, allowing dissociation of learning and performance relative to either cue. Right posterior hippocampal activation reflected learning and remembering of boundary-related locations, whereas right dorsal striatal activation reflected learning and remembering of landmark-related locations. Within the right hippocampus, anterior processing of environmental change (spatial novelty) was dissociated from posterior processing of location. Behavioral studies show that landmark-related learning obeys associative reinforcement, whereas boundary-related learning is incidental [Doeller CF, Burgess IN (2008) Proc Natl Acad Sci USA 105:5909-5914]. The distinct incidental hippocampal processing of boundaries is suggestive of a "geometric module" or "cognitive map" and may explain the hippocampal support of incidental/observational learning in "declarative" or "episodic" memory versus the striatal support of trial-and-error learning in "procedural" memory. Finally, the hippocampal and striatal systems appear to combine "bottom-up," simply influencing behavior proportional to their activations, without direct interaction, with "top-down" ventromedial prefrontal involvement when both are similarly active.
引用
收藏
页码:5915 / 5920
页数:6
相关论文
共 57 条
[11]   A cortical representation of the local visual environment [J].
Epstein, R ;
Kanwisher, N .
NATURE, 1998, 392 (6676) :598-601
[12]   Modulation of competing memory systems by distraction [J].
Foerde, Karin ;
Knowlton, Barbara J. ;
Poldrack, Russell A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (31) :11778-11783
[13]   Dynamic causal modelling [J].
Friston, KJ ;
Harrison, L ;
Penny, W .
NEUROIMAGE, 2003, 19 (04) :1273-1302
[14]  
Gallistel Randy., 1990, The Organization of Learning
[15]   Computational models of the hippocampal region: linking incremental learning and episodic memory [J].
Gluck, MA ;
Meeter, M ;
Myers, CE .
TRENDS IN COGNITIVE SCIENCES, 2003, 7 (06) :269-276
[16]   The well-worn route and the path less traveled: Distinct neural bases of route following and wayfinding in humans [J].
Hartley, T ;
Maguire, EA ;
Spiers, HJ ;
Burgess, N .
NEURON, 2003, 37 (05) :877-888
[17]  
Hartley T, 2000, HIPPOCAMPUS, V10, P369, DOI 10.1002/1098-1063(2000)10:4<369::AID-HIPO3>3.0.CO
[18]  
2-0
[19]   The hippocampus is required for short-term topographical memory in humans [J].
Hartley, Tom ;
Bird, Chris M. ;
Chan, Dennis ;
Cipolotti, Lisa ;
Husain, Masud ;
Vargha-Khadem, Faraneh ;
Burgess, Neil .
HIPPOCAMPUS, 2007, 17 (01) :34-48
[20]   HIPPOCAMPUS AND CONTEXTUAL RETRIEVAL OF INFORMATION FROM MEMORY - THEORY [J].
HIRSH, R .
BEHAVIORAL BIOLOGY, 1974, 12 (04) :421-444