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The Quantum Phenomena in Computational Model of Neuro-Cognition States: An Analytical Approach

Authors
Bagchi, Susmit
Issue Date
Sep-2015
Publisher
ANKA PUBLISHER
Keywords
cognition; consciousness; Hermitian operator; distributed computing; quantum mechanics
Citation
NEUROQUANTOLOGY, v.13, no.3, pp 285 - 292
Pages
8
Indexed
SCIE
SCOPUS
Journal Title
NEUROQUANTOLOGY
Volume
13
Number
3
Start Page
285
End Page
292
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/17064
ISSN
1303-5150
Abstract
The modeling of neurobiologic brain functions such as, cognition and consciousness are important research challenges having applications to other disciplines such as, bio-inspired soft computing and, adaptive distributed computing systems. The functions of brain and distributed computing structures have resemblances. This paper proposes a computational model of cognitive function and consciousness by using algebraic methods. Furthermore, the quantum mechanical basis of the cognitive model is formulated by using linear Hermitian. A set of choice functions is computed following the neurodynamics. The neuronal excitation is modeled by using trigonometric wave functions closely matching the neuronal firing. This paper illustrates an analytical approach to model neuronal excitation and, associated cognitive functions having quantum mechanical behaviour.
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