Title :
Cortical Activity and Connectivity of Human Brain during the Prisoner´s Dilemma: an EEG Hyperscanning Study
Author :
Babiloni, F. ; Astolfi, L. ; Cincotti, F. ; Mattia, D. ; Tocci, A. ; Tarantino, A. ; Marciani, M.G. ; Salinari, S. ; Gao, Smith ; Colosimo, A. ; De Vico Fallani, F.
Author_Institution :
Univ. of Rome, Rome
Abstract :
A major limitation of the approaches used in most of the studies performed so far for the characterization of the brain responses during social interaction is that only one of the participating brains is measured each time. The ldquointeractionrdquo between cooperating, competing or communicating brains is thus not measured directly, but inferred by independent observations aggregated by cognitive models and assumptions that link behavior and neural activation. In this paper, we use the simultaneous neuroelectric recording of several subjects engaged in cooperative games (EEG hyperscanning). This EEG hyperscanning allow us to observe and model directly the neural signature of human interactions in order to understand the cerebral processes generating and generated by social cooperation or competition. We used a paradigm called Prisoner´s Dilemma derived from the game theory. Results collected in a population of 22 subjects suggested that the most consistently activated structure in social interaction paradigms is the medial prefrontal cortex, which is found to be active in all the conflict situations analyzed. The role of the anterior cingulated cortex (ACC) assumes a main character being a discriminant factor for the ldquodefectrdquo attitude of the entire population examined. This observation is compatible with the role that the Theory of Mind assigns to the ACC.
Keywords :
cognition; electroencephalography; game theory; neurophysiology; EEG hyperscanning; Prisoner´s Dilemma; Theory-of-Mind; anterior cingulated cortex; brain responses; cerebral processes; cognitive models; cooperative games; cortical activity; game theory; human brain connectivity; human interactions; medial prefrontal cortex; neural activation; simultaneous neuroelectric recording; social cooperation; social interaction; Brain modeling; Design for experiments; Electroencephalography; Game theory; Graph theory; Humans; Information analysis; Particle measurements; Thin film transistors; Timing; Analysis of Variance; Brain; Brain Mapping; Cerebral Cortex; Electroencephalography; Game Theory; Gyrus Cinguli; Humans; Models, Neurological;
Conference_Titel :
Engineering in Medicine and Biology Society, 2007. EMBS 2007. 29th Annual International Conference of the IEEE
Conference_Location :
Lyon
Print_ISBN :
978-1-4244-0787-3
DOI :
10.1109/IEMBS.2007.4353452