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Information and memory-based analysis for decoding of the human learning between normal and virtual reality (vr) conditions

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dc.rights.license CC BY eng
dc.contributor.author Namazi, Hamidreza cze
dc.contributor.author Babini, M.H. cze
dc.contributor.author Kuča, Kamil cze
dc.contributor.author Krejcar, Ondřej cze
dc.date.accessioned 2025-12-05T09:57:52Z
dc.date.available 2025-12-05T09:57:52Z
dc.date.issued 2021 eng
dc.identifier.issn 0218-348X eng
dc.identifier.uri http://hdl.handle.net/20.500.12603/1240
dc.description.abstract In this paper, we investigated the learning ability of students in normal versus virtual reality (VR) watching of videos by mathematical analysis of electroencephalogram (EEG) signals. We played six videos in the 2D and 3D modes for nine subjects and calculated the Shannon entropy of recorded EEG signals to investigate how much their embedded information changes between these modes. We also calculated the Hurst exponent of EEG signals to compare the changes in the memory of signals. The analysis results showed that watching the videos in a VR condition causes greater information and memory in EEG signals. A strong correlation was obtained between the increment of information and memory of EEG signals. These increments also have been verified based on the answers that subjects gave to the questions about the content of videos. Therefore, we can say that when subjects watch a video in a VR condition, more information is transferred to their brains that cause increments in their memory. © 2021 Cambridge University Press. All rights reserved. eng
dc.format p. "Article number 2150163" eng
dc.language.iso eng eng
dc.publisher World Scientific eng
dc.relation.ispartof Fractals, volume 29, issue: 3 eng
dc.subject Brain eng
dc.subject Hurst Exponent eng
dc.subject Information eng
dc.subject Memory eng
dc.subject Shannon Entropy eng
dc.subject Virtual Reality (VR) eng
dc.title Information and memory-based analysis for decoding of the human learning between normal and virtual reality (vr) conditions eng
dc.type article eng
dc.identifier.obd 43877659 eng
dc.identifier.doi 10.1142/S0218348X21501632 eng
dc.publicationstatus postprint eng
dc.peerreviewed yes eng
dc.source.url https://www.worldscientific.com/doi/abs/10.1142/S0218348X21501632 cze
dc.relation.publisherversion https://www.worldscientific.com/doi/abs/10.1142/S0218348X21501632 eng
dc.rights.access Open Access eng


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