Information flow in context-dependent hierarchical Bayesian inference
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[1] D. Gentner,et al. Structure mapping in analogy and similarity. , 1997 .
[2] Michael Barr,et al. *-Autonomous categories and linear logic , 1991, Mathematical Structures in Computer Science.
[3] K. Jon Barwise,et al. Information and Impossibilities , 1997, Notre Dame J. Formal Log..
[4] Ehtibar N. Dzhafarov,et al. On universality of classical probability with contextually labeled random variables , 2017, Journal of Mathematical Psychology.
[5] G. A. Baker,et al. Formulation of Quantum Mechanics Based on the Quasi-Probability Distribution Induced on Phase Space , 1958 .
[6] John Collier,et al. INFORMATION, CAUSATION AND COMPUTATION , 2011 .
[7] Pascal Hitzler,et al. Morphisms in Context , 2005, ICCS.
[8] Chris Fields,et al. Metaphorical motion in mathematical reasoning: further evidence for pre-motor implementation of structure mapping in abstract domains , 2013, Cognitive Processing.
[9] A. Clark. Whatever next? Predictive brains, situated agents, and the future of cognitive science. , 2013, The Behavioral and brain sciences.
[10] D. Kahneman,et al. The reviewing of object files: Object-specific integration of information , 1992, Cognitive Psychology.
[11] M. Shanahan,et al. Applying global workspace theory to the frame problem , 2005, Cognition.
[12] Chris Fields,et al. Sharing Nonfungible Information Requires Shared Nonfungible Information , 2019, Quantum Reports.
[13] Guillem Collell,et al. Brain activity and cognition: a connection from thermodynamics and information theory , 2015, Front. Psychol..
[14] Ehtibar N. Dzhafarov,et al. Snow Queen Is Evil and Beautiful: Experimental Evidence for Probabilistic Contextuality in Human Choices , 2017, Decision.
[15] A. Fine. Hidden Variables, Joint Probability, and the Bell Inequalities , 1982 .
[16] S. Dehaene,et al. Towards a cognitive neuroscience of consciousness: basic evidence and a workspace framework , 2001, Cognition.
[17] Giulio Chiribella,et al. Quantum from Principles , 2016 .
[18] Jonathan Evans. Dual-processing accounts of reasoning, judgment, and social cognition. , 2008, Annual review of psychology.
[19] Vaughan Pratt. Broadening the denotational semantics of linear logic , 1996, Electron. Notes Theor. Comput. Sci..
[20] Ricarda I. Schubotz,et al. Prediction, Cognition and the Brain , 2009, Front. Hum. Neurosci..
[21] Andrei Khrennikov,et al. True contextuality beats direct influences in human decision making. , 2018, Journal of experimental psychology. General.
[22] J. Bell. On the Problem of Hidden Variables in Quantum Mechanics , 1966 .
[23] Timothy Porter,et al. A spatial view of information , 2006, Theor. Comput. Sci..
[24] O. Gühne,et al. State-independent experimental test of quantum contextuality , 2009, Nature.
[25] Chris Fields,et al. A mosaic of Chu spaces and Channel Theory I: Category-theoretic concepts and tools , 2018, J. Exp. Theor. Artif. Intell..
[26] Adam N. Sanborn,et al. Bayesian Brains without Probabilities , 2016, Trends in Cognitive Sciences.
[27] F. Nori,et al. Leggett–Garg inequalities , 2013, 1304.5133.
[28] Karl J. Friston,et al. Free-energy and the brain , 2007, Synthese.
[29] Samson Abramsky. Big toy models , 2011, Synthese.
[30] Glynn Winskel,et al. Event Structure Semantics for CCS and Related Languages , 1982, ICALP.
[31] Patrick Allo,et al. Reasoning about data and information , 2009, Synthese.
[32] Tom Ziemke,et al. Enactive artificial intelligence: Investigating the systemic organization of life and mind , 2009, Artif. Intell..
[33] Chris Fields,et al. Markov blankets are general physical interaction surfaces: Comment on "Morphogenesis as Bayesian inference: A variational approach to pattern formation and control in complex biological systems" by Michael Levin et al. , 2019, Physics of life reviews.
[34] Chris Fields,et al. Do Process-1 simulations generate the epistemic feelings that drive Process-2 decision making? , 2020, Cognitive Processing.
[35] Ehtibar N. Dzhafarov,et al. Contextuality in canonical systems of random variables , 2017, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[37] T. Rudolph,et al. Reference frames, superselection rules, and quantum information , 2006, quant-ph/0610030.
[38] Karl J. Friston,et al. Active inference and epistemic value , 2015, Cognitive neuroscience.
[39] Rui Soares Barbosa,et al. Contextual Fraction as a Measure of Contextuality. , 2017, Physical review letters.
[40] Jaime Gomez-Ramirez,et al. Conciliating neuroscience and phenomenology via category theory. , 2015, Progress in biophysics and molecular biology.
[41] Chris Fields,et al. Representing Measurement as a Thermodynamic Symmetry Breaking , 2020, Symmetry.
[42] Andrzej Skowron,et al. Information flow in logic for distributed systems: Extending graded consequence , 2019, Inf. Sci..
[43] Jeremy Seligman. Channels: From Logic to Probability , 2009, Formal Theories of Information.
[44] N. Mermin. Hidden variables and the two theorems of John Bell , 1993, 1802.10119.
[45] Karl J. Friston,et al. Predictive coding under the free-energy principle , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[46] Chris Fields,et al. How humans solve the frame problem , 2013, J. Exp. Theor. Artif. Intell..
[47] Walther,et al. Feynman's approach to negative probability in quantum mechanics. , 1994, Physical review. A, Atomic, molecular, and optical physics.
[48] A. Cabello,et al. Experimental test of quantum contextuality in neutron interferometry. , 2009, Physical review letters.
[49] Chris Fields,et al. A mosaic of Chu spaces and Channel Theory II: applications to object identification and mereological complexity , 2018, J. Exp. Theor. Artif. Intell..
[50] Glynn Winskel,et al. Probabilistic event structures and domains , 2006, Theor. Comput. Sci..
[51] David Jennings,et al. No return to classical reality , 2015, 1501.03202.
[52] Vaughan R. Pratt,et al. Chu Spaces and Their Interpretation as Concurrent Objects , 1995, Computer Science Today.
[53] Samson Abramsky,et al. The sheaf-theoretic structure of non-locality and contextuality , 2011, 1102.0264.
[54] Karl J. Friston,et al. A free energy principle for the brain , 2006, Journal of Physiology-Paris.
[55] N. Bohr. The Quantum Postulate and the Recent Development of Atomic Theory , 1928, Nature.
[56] Jared Culbertson,et al. Bayesian machine learning via category theory , 2013, 1312.1445.
[57] C. Fields. Implementation of structure-mapping inference by event-file binding and action planning: a model of tool-improvisation analogies , 2011, Psychological research.
[58] Karl J. Friston. Life as we know it , 2013, Journal of The Royal Society Interface.
[59] Vladik Kreinovich,et al. Chu Spaces: Towards New Foundations for Fuzzy Logic and Fuzzy Control, with Applications to Information Flow on the World Wide Web , 2001, J. Adv. Comput. Intell. Intell. Informatics.
[60] Karl J. Friston,et al. Knowing one's place: a free-energy approach to pattern regulation , 2015, Journal of The Royal Society Interface.
[61] Vaughan R. Pratt,et al. Chu Spaces from the Representational Viewpoint , 1999, Ann. Pure Appl. Log..
[62] D. Knill,et al. The Bayesian brain: the role of uncertainty in neural coding and computation , 2004, Trends in Neurosciences.
[63] Karl J. Friston. The free-energy principle: a unified brain theory? , 2010, Nature Reviews Neuroscience.
[64] Stan Gudder. Contexts in Quantum Measurement Theory , 2018 .
[65] Ruediger Schack,et al. Quantum-Bayesian Coherence , 2009, 1301.3274.
[66] J. Bell. On the Einstein-Podolsky-Rosen paradox , 1964 .
[67] Joseph A. Goguen,et al. A categorical manifesto , 1989, Mathematical Structures in Computer Science.
[68] Donald D. Hoffman,et al. The Interface Theory of Perception , 2015, Psychonomic bulletin & review.
[69] Jirí Adámek,et al. Abstract and Concrete Categories - The Joy of Cats , 1990 .
[70] Ru Zhang,et al. Is there contextuality in behavioural and social systems? , 2015, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[71] Chris Fields,et al. Some Consequences of the Thermodynamic Cost of System Identification , 2018, Entropy.
[72] No-signalling, Contextuality and the Arrow of Time , 2019, 1910.09596.
[73] Karl J. Friston,et al. Morphogenesis as Bayesian inference: A variational approach to pattern formation and control in complex biological systems. , 2020, Physics of life reviews.
[74] N David Mermin. Making better sense of quantum mechanics. , 2019, Reports on progress in physics. Physical Society.
[75] Chris Fields,et al. Equivalence of the Frame and Halting Problems , 2020, Algorithms.
[76] J. Fodor. The Modularity of mind. An essay on faculty psychology , 1986 .