Entorhinal cortex receptive fields are modulated by spatial attention, even without movement

被引:28
作者
Wilming, Niklas [1 ,2 ,3 ]
Koenig, Peter [1 ,3 ]
Koenig, Seth [2 ]
Buffalo, Elizabeth A. [2 ]
机构
[1] Univ Osnabruck, Inst Cognit Sci, Osnabruck, Germany
[2] Univ Washington, Sch Med, Dept Physiol & Biophys, Washington Natl Primate Res Ctr, Seattle, WA 98195 USA
[3] Univ Med Ctr Hamburg Eppendorf, Dept Neurophysiol & Pathophysiol, Hamburg, Germany
来源
ELIFE | 2018年 / 7卷
基金
美国国家卫生研究院;
关键词
PLACE-CELL SEQUENCES; THETA-RHYTHM; HUMAN-MEMORY; GRID CELLS; REPRESENTATION; NAVIGATION; HIPPOCAMPUS; SYSTEM; RAT; NETWORKS;
D O I
10.7554/eLife.31745
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Grid cells in the entorhinal cortex allow for the precise decoding of position in space. Along with potentially playing an important role in navigation, grid cells have recently been hypothesized to make a general contribution to mental operations. A prerequisite for this hypothesis is that grid cell activity does not critically depend on physical movement. Here, we show that movement of covert attention, without any physical movement, also elicits spatial receptive fields with a triangular tiling of space. In monkeys trained to maintain central fixation while covertly attending to a stimulus moving in the periphery we identified a significant population (20/141, 14% neurons at a FDR <5%) of entorhinal cells with spatially structured receptive fields. This contrasts with recordings obtained in the hippocampus, where grid-like representations were not observed. Our results provide evidence that neurons in macaque entorhinal cortex do not rely on physical movement.
引用
收藏
页数:16
相关论文
共 30 条
  • [1] Grid-cell representations in mental simulation
    Bellmund, Jacob L. S.
    Deuker, Lorena
    Schroder, Tobias Navarro
    Doeller, Christian F.
    [J]. ELIFE, 2016, 5
  • [2] Reduction of Theta Rhythm Dissociates Grid Cell Spatial Periodicity from Directional Tuning
    Brandon, Mark P.
    Bogaard, Andrew R.
    Libby, Christopher P.
    Connerney, Michael A.
    Gupta, Kishan
    Hasselmo, Michael E.
    [J]. SCIENCE, 2011, 332 (6029) : 595 - 599
  • [3] Memory, navigation and theta rhythm in the hippocampal-entorhinal system
    Buzsaki, Gyoergy
    Moser, Edvard I.
    [J]. NATURE NEUROSCIENCE, 2013, 16 (02) : 130 - 138
  • [4] Organizing conceptual knowledge in humans with a gridlike code
    Constantinescu, Alexandra O.
    O'Reilly, Jill X.
    Behrens, Timothy E. J.
    [J]. SCIENCE, 2016, 352 (6292) : 1464 - 1468
  • [5] A common network of functional areas for attention and eye movements
    Corbetta, M
    Akbudak, E
    Conturo, TE
    Snyder, AZ
    Ollinger, JM
    Drury, HA
    Linenweber, MR
    Petersen, SE
    Raichle, ME
    Van Essen, DC
    Shulman, GL
    [J]. NEURON, 1998, 21 (04) : 761 - 773
  • [6] Forward and reverse hippocampal place-cell sequences during ripples
    Diba, Kamran
    Buzsaki, Gyoergy
    [J]. NATURE NEUROSCIENCE, 2007, 10 (10) : 1241 - 1242
  • [7] Evidence for grid cells in a human memory network
    Doeller, Christian F.
    Barry, Caswell
    Burgess, Neil
    [J]. NATURE, 2010, 463 (7281) : 657 - U87
  • [8] Cellular networks underlying human spatial navigation
    Ekstrom, AD
    Kahana, MJ
    Caplan, JB
    Fields, TA
    Isham, EA
    Newman, EL
    Fried, I
    [J]. NATURE, 2003, 425 (6954) : 184 - 187
  • [9] Microstructure of a spatial map in the entorhinal cortex
    Hafting, T
    Fyhn, M
    Molden, S
    Moser, MB
    Moser, EI
    [J]. NATURE, 2005, 436 (7052) : 801 - 806
  • [10] Hoffman J., 1998, ATTENTION, P121