Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 40 checked references that resolve
resolves10.1037/a0022542A quantum theoretical explanation for probability judgment errors.
resolves10.1111/tops.12042Concepts and Their Dynamics: A Quantum‐Theoretic Modeling of Human Thought
resolves10.1111/tops.12045Open Parallel Cooperative and Competitive Decision Processes: A Potential Provenance for Quantum Probability Decision Models
resolves10.5603/AIT.2015.0015Neurofizjologiczne uwarunkowania procesów snu, czuwania, świadomości i przytomności. Część 1
resolves10.1111/tops.12043The Potential of Using Quantum Theory to Build Models of Cognition
resolves10.1016/j.tics.2016.03.013Navigating the Affordance Landscape: Feedback Control as a Process Model of Behavior and Cognition
The 16 references without a DOI — listed, not checked
no DOI — not checkedP. D. Bruza and J. R. Busemeyer, Quantum models of cognition and decision. 2012.
no DOI — not checkedHameroff S, Penrose R. Orchestrated objective reduction of quantum coherence in brain microtubules: the ‘Orch OR’ model for consciousness. In: A Model consciousness. Math. Comput. Simul; 1996.
no DOI — not checkedChella A, Cossentino M, Gaglio S, Seidita V. A general theoretical framework for designing cognitive architectures: hybrid and meta-level architectures for BICA. Biol Inspired Cogn Archit. 2012;2:100–8.
no DOI — not checkedSchockaert S. Reasoning about Betweenness and RCC8 Constraints in Qualitative Conceptual Spaces; 2018. p. 1963–9.
no DOI — not checkedSchockaert S, Prade H. Interpolation and extrapolation in conceptual spaces: A case study in the music domain. Lect. Notes Comput. Sci. (including Subser. Lect. Notes Artif. Intell. Lect. Notes Bioinformatics). 2011;6902 LNCS:217–31.
no DOI — not checkedR. Belohlavek, “Introduction to formal concept analysis,” 2008.
no DOI — not checkedIshwarya MS, Kumar CA. Quantum inspired high dimensional conceptual space as KID model for elderly assistance. In: 18th proceedings of Intelligent Systems Design and Applications; 2018.
no DOI — not checkedReggia JA, Katz G, Huang DW. What are the computational correlates of consciousness? Biol. Inspired Cogn. Archit. 2016;17:101–13.
no DOI — not checkedRuffini G. An algorithmic information theory of consciousness. Neurosci Conscious. 2017;3(1):1–11.
no DOI — not checkedVan Gulick R. Consciousness,The Stanford Encyclopedia of Philosophy, Spring 201: Metaphysics Research Lab, Stanford University; 2018.
no DOI — not checkedMogensen J, Overgaard M. Reorganization of the connectivity between elementary functions as a common mechanism of phenomenal consciousness and working memory: from functions to strategies. Philos Trans R Soc B Biol Sci. 1755;373:2018.
no DOI — not checkedBelohlavek R. Introduction to formal concept analysis. Palacky Univ. Dep. Comput. Sci. Olomouc. 2008:47.
no DOI — not checkedAswani Kumar C, Ishwarya MS, Loo CK. Formal concept analysis approach to cognitive functionalities of bidirectional associative memory. Biol. Inspired Cogn. Archit. 2015;12:20–33.
no DOI — not checkedJ. Gruska, Quantum Computing. 2008.
no DOI — not checkedE. Knill, R. Laflamme, H. Barnum and et al, Introduction to Quantum Information Processing. 2011.
no DOI — not checkedK. Tunde, J. Rancz, V. Varga, and J. Puskas, “A software tool for data analysis based on formal concept analysis,” vol. LIII, no. 2, pp. 67–78, 2008.
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