A map of visual space in the primate entorhinal cortex

被引:310
作者
Killian, Nathaniel J. [1 ,2 ]
Jutras, Michael J. [1 ]
Buffalo, Elizabeth A. [1 ,3 ]
机构
[1] Yerkes Natl Primate Res Ctr, Atlanta, GA 30329 USA
[2] Georgia Inst Technol, Wallace H Coulter Dept Biomed Engn, Atlanta, GA 30332 USA
[3] Emory Univ, Sch Med, Dept Neurol, Atlanta, GA 30332 USA
关键词
SPATIAL REPRESENTATION SYSTEM; MONKEY HIPPOCAMPAL-NEURONS; GRID CELLS; THETA OSCILLATIONS; MACAQUE HIPPOCAMPUS; MEMORY; PLACE; ORGANIZATION; PERIODICITY; NAVIGATION;
D O I
10.1038/nature11587
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
Place-modulated activity among neurons in the hippocampal formation presents a means to organize contextual information in the service of memory formation and recall(1,2). One particular spatial representation, that of grid cells, has been observed in the entorhinal cortex (EC) of rats and bats(3-5), but has yet to be described in single units in primates. Here we examined spatial representations in the EC of head-fixed monkeys performing a free-viewing visual memory task(6,7). Individual neurons were identified in the primate EC that emitted action potentials when the monkey fixated multiple discrete locations in the visual field in each of many sequentially presented complex images. These firing fields possessed spatial periodicity similar to a triangular tiling with a corresponding well-defined hexagonal structure in the spatial auto-correlation. Further, these neurons showed theta-band oscillatory activity and changing spatial scale as a function of distance from the rhinal sulcus, which is consistent with previous findings in rodents(4,8-10). These spatial representations may provide a framework to anchor the encoding of stimulus content in a complex visual scene. Together, our results provide a direct demonstration of grid cells in the primate and suggest that EC neurons encode space during visual exploration, even without locomotion.
引用
收藏
页码:761 / 764
页数:4
相关论文
共 31 条
[1]   Reduction of Theta Rhythm Dissociates Grid Cell Spatial Periodicity from Directional Tuning [J].
Brandon, Mark P. ;
Bogaard, Andrew R. ;
Libby, Christopher P. ;
Connerney, Michael A. ;
Gupta, Kishan ;
Hasselmo, Michael E. .
SCIENCE, 2011, 332 (6029) :595-599
[2]   An oscillatory interference model of grid cell firing [J].
Burgess, Neil ;
Barry, Caswell ;
O'Keefe, John .
HIPPOCAMPUS, 2007, 17 (09) :801-812
[3]   Models of place and grid cell firing and theta rhythmicity [J].
Burgess, Neil ;
O'Keefe, John .
CURRENT OPINION IN NEUROBIOLOGY, 2011, 21 (05) :734-744
[4]  
Canto Cathrin B., 2008, Neural Plasticity, V2008, P1, DOI 10.1155/2008/381243
[5]   Evidence for grid cells in a human memory network [J].
Doeller, Christian F. ;
Barry, Caswell ;
Burgess, Neil .
NATURE, 2010, 463 (7281) :657-U87
[6]   Cellular networks underlying human spatial navigation [J].
Ekstrom, AD ;
Kahana, MJ ;
Caplan, JB ;
Fields, TA ;
Isham, EA ;
Newman, EL ;
Fried, I .
NATURE, 2003, 425 (6954) :184-187
[7]   Human hippocampal theta activity during virtual navigation [J].
Ekstrom, AD ;
Caplan, JB ;
Ho, E ;
Shattuck, K ;
Fried, I ;
Kahana, MJ .
HIPPOCAMPUS, 2005, 15 (07) :881-889
[8]   Microstructure of a spatial map in the entorhinal cortex [J].
Hafting, T ;
Fyhn, M ;
Molden, S ;
Moser, MB ;
Moser, EI .
NATURE, 2005, 436 (7052) :801-806
[9]   Hippocampus-independent phase precession in entorhinal grid cells [J].
Hafting, Torkel ;
Fyhn, Marianne ;
Bonnevie, Tora ;
Moser, May-Britt ;
Moser, Edvard I. .
NATURE, 2008, 453 (7199) :1248-U50
[10]   Entorhinal cortex of the monkey: IV. Topographical and laminar organization of cortical afferents [J].
Insausti, Ricardo ;
Amaral, David G. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2008, 509 (06) :608-641