journal article Open Access Jan 01, 2016

EEG μ rhythm in virtual reality reveals that motor coding of visual objects in peripersonal space is task dependent

Cortex Vol. 74 pp. 20-30 · Elsevier BV
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References
76
[1]
Ambrosini "Tie my hands, tie my eyes" Journal of Experimental Psychology. Human Perception and Performance (2012) 10.1037/a0026570
[2]
Babiloni "Human movement-related potentials vs desynchronization of EEG alpha rhythm: a high-resolution EEG study" NeuroImage (1999) 10.1006/nimg.1999.0504
[3]
Contribution of the motor system to the perception of reachable space: an fMRI study

Angela Bartolo, Yann Coello, Martin G. Edwards et al.

European Journal of Neuroscience 2014 10.1111/ejn.12742
[4]
Behmer "Reading sheet music facilitates sensorimotor mu-desynchronization in musicians" Clinical Neurophysiology (2011) 10.1016/j.clinph.2010.12.035
[5]
Binkofski "A fronto-parietal circuit for object manipulation in man: evidence from an fMRI-study" European Journal of Neuroscience (1999) 10.1046/j.1460-9568.1999.00753.x
[6]
Blumstein "The loss of anti-predator behaviour following isolation on islands" Proceedings. Biological Sciences/The Royal Society (2005) 10.1098/rspb.2005.3147
[7]
Bourgeois "Effect of visuomotor calibration and uncertainty on the perception of peripersonal space" Attention, Perception & Psychophysics (2012) 10.3758/s13414-012-0316-x
[8]
Bourgeois "Costs and benefits of tool-use on the perception of reachable space" Acta Psychologica (2014) 10.1016/j.actpsy.2014.01.008
[9]
Braadbaart "Do mirror neuron areas mediate mu rhythm suppression during imitation and action observation?" International Journal of Psychophysiology (2013) 10.1016/j.ijpsycho.2013.05.019
[10]
The Psychophysics Toolbox

David H. Brainard

Spatial Vision 1997 10.1163/156856897x00357
[11]
Cardellicchio "The space of affordances: a TMS study" Neuropsychologia (2011) 10.1016/j.neuropsychologia.2011.01.021
[12]
Carello "Visually perceiving what is reachable" Ecological Psychology (1989) 10.1207/s15326969eco0101_3
[13]
Chao "Representation of manipulable man-made objects in the dorsal stream" NeuroImage (2000) 10.1006/nimg.2000.0635
[14]
Ciganek "A contribution to the problem of rolandic ‘arceau’ rhythm" Electroencephalography and Clinical Neurophysiology (1959)
[15]
Cochin "Observation and execution of movement: similarities demonstrated by quantified electroencephalography" European Journal of Neuroscience (1999) 10.1046/j.1460-9568.1999.00598.x
[16]
Coello "Perceiving what is reachable depends on motor representations: evidence from a transcranial magnetic stimulation study" PloS One (2008) 10.1371/journal.pone.0002862
[17]
Coello "Embodied perception of reachable space: how do we manage threatening objects?" Cognitive Processing (2012) 10.1007/s10339-012-0470-z
[18]
Coello "Embodiment, spatial categorisation and action" Consciousness and Cognition (2007) 10.1016/j.concog.2007.07.003
[19]
Coello "Effect of structuring the workspace on cognitive and sensorimotor distance estimation: no dissociation between perception and action" Perception & Psychophysics (2006) 10.3758/bf03193675
[20]
Coll "Cross-modal repetition effects in the mu rhythm indicate tactile mirroring during action observation" Cortex (2014)
[21]
Costantini "When objects are close to me: affordances in the peripersonal space" Psychonomic Bulletin & Review (2011) 10.3758/s13423-011-0054-4
[22]
Culham "fMRI investigations of reaching and ego space in human superior parieto-occipital cortex" (2008)
[23]
Delevoye-Turrell "Motor representation and the perception of space" (2010)
[24]
Delorme "EEGLAB: an open source toolbox for analysis of single-trial EEG dynamics including independent component analysis" Journal of Neuroscience Methods (2004) 10.1016/j.jneumeth.2003.10.009
[25]
Delorme "Enhanced detection of artifacts in EEG data using higher-order statistics and independent component analysis" NeuroImage (2007) 10.1016/j.neuroimage.2006.11.004
[26]
Fischer "Estimating reachability: whole body engagement or postural stability?" Human Movement Science (2000) 10.1016/s0167-9457(00)00016-6
[27]
Gabbard "Perceived reachability in single- and multiple-degree-of-freedom workspaces" Journal of Motor Behavior (2006) 10.3200/jmbr.38.6.423-429
[28]
Gallese "The “conscious” dorsal stream: embodied simulation and its role in space and action conscious awareness" Psyche (2007)
[29]
Gallese "Motor abstraction: a neuroscientific account of how action goals and intentions are mapped and understood" Psychological Research (2009) 10.1007/s00426-009-0232-4
[30]
Gallivan "Is that within reach? fMRI reveals that the human superior parieto-occipital cortex encodes objects reachable by the hand" Journal of Neuroscience (2009) 10.1523/jneurosci.0377-09.2009
[31]
Gallivan "Neuroimaging reveals enhanced activation in a reach-selective brain area for objects located within participants' typical hand workspaces" Neuropsychologia (2011) 10.1016/j.neuropsychologia.2011.09.027
[32]
Goldman "Simultaneous EEG and fMRI of the alpha rhythm" NeuroReport (2002) 10.1097/00001756-200212200-00022
[33]
Grafton "Evidence for a distributed hierarchy of action representation in the brain" Human Movement Science (2007) 10.1016/j.humov.2007.05.009
[34]
Grèzes "Does visual perception of object afford action? Evidence from a neuroimaging study" Neuropsychologia (2002) 10.1016/s0028-3932(01)00089-6
[35]
Grusser "Multimodal structure of extrapersonal space" (1983)
[36]
Hall (1996)
[37]
Hari "Action-perception connection and the cortical mu rhythm" Progress in Brain Research (2006) 10.1016/s0079-6123(06)59017-x
[38]
Hediger "Zur Biologie und Psychologie der Flucht bei Tieren" Biologisches Zentralblatt (1934)
[39]
Heft "A methodological note on overestimates of reaching distance: distinguishing between perceptual and analytical judgments" Ecological Psychology (1993) 10.1207/s15326969eco0503_3
[40]
Holmes "The body schema and the multisensory representation(s) of peripersonal space" Cognitive Processing (2004) 10.1007/s10339-004-0013-3
[41]
Iachini "Body space in social interactions: a comparison of reaching and comfort distance in immersive virtual reality" PloS One (2014) 10.1371/journal.pone.0111511
[42]
Jasper "Electrocorticograms in man: effect of voluntary movement upon the electrical activity of the precentral gyrus" Archiv Für Psychiatrie Und Nervenkrankheiten (1949) 10.1007/bf01062488
[43]
Jeannerod "Neural simulation of action: a unifying mechanism for motor cognition" NeuroImage (2001) 10.1006/nimg.2001.0832
[44]
Kleiner (2007)
[45]
Kuhlman "Functional topography of the human mu rhythm" Electroencephalography and Clinical Neurophysiology (1978) 10.1016/0013-4694(78)90107-4
[46]
Lamm "Predicting the actions of others taps into one's own somatosensory representations-A functional MRI study" Neuropsychologia (2007) 10.1016/j.neuropsychologia.2007.03.024
[47]
Llanos "Mu-rhythm changes during the planning of motor and motor imagery actions" Neuropsychologia (2013) 10.1016/j.neuropsychologia.2013.02.008
[48]
Mark "Postural dynamics and the preferred critical boundary for visually guided reaching" Journal of Experimental Psychology. Human Perception and Performance (1997) 10.1037/0096-1523.23.5.1365
[49]
Medendorp "Parietofrontal circuits in goal-oriented behaviour" European Journal of Neuroscience (2011) 10.1111/j.1460-9568.2011.07701.x
[50]
Muthukumaraswamy "Primary motor cortex activation during action observation revealed by wavelet analysis of the EEG" Clinical Neurophysiology (2004) 10.1016/j.clinph.2004.03.004

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Published
Jan 01, 2016
Vol/Issue
74
Pages
20-30
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Yannick Wamain, François Gabrielli, Yann Coello (2016). EEG μ rhythm in virtual reality reveals that motor coding of visual objects in peripersonal space is task dependent. Cortex, 74, 20-30. https://doi.org/10.1016/j.cortex.2015.10.006
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