Electrophysiological correlates of biological motion permanence in humans

被引:14
作者
Saunier, Ghislain [1 ,2 ]
Martins, Eduardo F. [1 ]
Dias, Elisa C. [3 ]
de Oliveira, Jose M. [1 ]
Pozzo, Thierry [4 ,5 ,6 ]
Vargas, Claudia D. [1 ]
机构
[1] Univ Fed Rio de Janeiro, Lab Neurobiol 2, IBCCF, BR-21941902 Rio De Janeiro, RJ, Brazil
[2] Fed Univ Para, Inst Ciencias Biol, BR-66059 Belem, Para, Brazil
[3] Nathan S Kline Inst Psychiat Res, Ctr Schizophrenia Res, Orangeburg, NY 10692 USA
[4] Ist Italian Tecnol, Dept Robot Brain & Cognit Sci, Genoa, Italy
[5] Univ Bourgogne, Inst Univ France, UFR STAPS, Dijon, France
[6] INSERM, U887, Dijon, France
关键词
Motion occlusion; Event-related potentials; Prediction; Sensorimotor representations; Internal models of action; EVENT-RELATED POTENTIALS; NEURONAL REPRESENTATION; SEMANTIC INTEGRATION; VISUAL-PERCEPTION; RECOGNITION; MODULATION; OBJECTS; CORTEX;
D O I
10.1016/j.bbr.2012.08.038
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
Spatiotemporal discontinuity of visual input is a common occurrence in daily life. For example, when a walking person disappears temporarily behind a wall, observers have a clear sense of his physical presence despite the absence of any visual information (movement permanence). To investigate the neural substrates of biological motion permanence, we recorded scalp EEG activity of sixteen subjects while they passively observed either biological or scrambled motion disappearing behind an occluder and reappearing. The moment of the occluder's appearance was either fixed or randomized. The statistical comparison between the biological and scrambled motion ERA waveforms revealed a modulation of activity in centro-parietal and right occipito-temporal regions during the occlusion phase when the biological motion disappearance was time-locked, possibly reflecting the recall of sensorimotor representations. These representations might allow the prediction of moving organisms in occlusion conditions. When the appearance of the occluder was unpredictable there was no difference between biological and scrambled motion either before or during occlusion, indicating that temporal prediction is relevant to the processing of biological motion permanence. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:166 / 174
页数:9
相关论文
共 39 条
  • [1] Action anticipation and motor resonance in elite basketball players
    Aglioti, Salvatore M.
    Cesari, Paola
    Romani, Michela
    Urgesi, Cosimo
    [J]. NATURE NEUROSCIENCE, 2008, 11 (09) : 1109 - 1116
  • [2] NEURONAL CORRELATES OF INFERRED MOTION IN PRIMATE POSTERIOR PARIETAL CARTER
    ASSAD, JA
    MAUNSELL, JHR
    [J]. NATURE, 1995, 373 (6514) : 518 - 521
  • [3] Neuronal representation of disappearing and hidden objects in temporal cortex of the macaque
    Baker, CI
    Keysers, C
    Jellema, T
    Wicker, B
    Perrett, DI
    [J]. EXPERIMENTAL BRAIN RESEARCH, 2001, 140 (03) : 375 - 381
  • [4] Perception of biological motion in parietal patients
    Battelli, L
    Cavanagh, P
    Thornton, IM
    [J]. NEUROPSYCHOLOGIA, 2003, 41 (13) : 1808 - 1816
  • [5] Perception of human motion
    Blake, Randolph
    Shiffrar, Maggie
    [J]. ANNUAL REVIEW OF PSYCHOLOGY, 2007, 58 : 47 - 73
  • [6] Bonda E, 1996, J NEUROSCI, V16, P3737
  • [7] Neural modulation by regularity and passage of time
    Correa, Angel
    Nobre, Anna C.
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 2008, 100 (03) : 1649 - 1655
  • [8] Endogenous modulation of low frequency oscillations by temporal expectations
    Cravo, Andre M.
    Rohenkohl, Gustavo
    Wyart, Valentin
    Nobre, Anna C.
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 2011, 106 (06) : 2964 - 2972
  • [9] Synergistic effect of combined temporal and spatial expectations on visual attention
    Doherty, JR
    Rao, AL
    Mesulam, MM
    Nobre, AC
    [J]. JOURNAL OF NEUROSCIENCE, 2005, 25 (36) : 8259 - 8266
  • [10] Role of the parietal cortex in predicting incoming actions
    Fontana, A. P.
    Kilner, J. M.
    Rodrigues, E. C.
    Joffily, M.
    Nighoghossian, N.
    Vargas, C. D.
    Sirigu, A.
    [J]. NEUROIMAGE, 2012, 59 (01) : 556 - 564