A symbolic information approach applied to human intracranial data to characterize and distinguish different congnitive processes
\'Icaro Rodolfo Soares Coelho Da Paz, Pedro F. A. Silva, Helena, Bordini de Lucas, S\'ergio H. A. Lira, Osvaldo A. Rosso, Fernanda Selingardi, Matias

TL;DR
This study introduces a symbolic information approach to analyze intracranial brain signals, effectively distinguishing different cognitive processes and identifying key time scales and regions involved in task-specific neural activity.
Contribution
The paper presents a novel application of symbolic information theory to intracranial data, enabling detailed comparison of cognitive states and revealing important temporal and spatial neural features.
Findings
Method distinguishes visual search from blank intervals in brain signals.
Identifies specific cortical regions and time scales with significant differences.
Effective on a trial-by-trial basis for cognitive process classification.
Abstract
How the human brain processes information during different cognitive tasks is one of the greatest questions in contemporary neuroscience. Understanding the statistical properties of brain signals during specific activities is one promising way to address this question. Here we analyze freely available data from implanted electrocorticography (ECoG) in five human subjects during two different cognitive tasks in the light of information theory quantifiers ideas. We employ a symbolic information approach to determine the probability distribution function associated with the time series from different cortical areas. Then we utilize these probabilities to calculate the associated Shannon entropy and a statistical complexity measure based on the disequilibrium between the actual time series and one with a uniform probability distribution function. We show that an Euclidian distance in the…
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Taxonomy
TopicsCognitive Science and Mapping · Cognitive Science and Education Research · Action Observation and Synchronization
