Page 103 - Artificial Intelligence in the Age of Neural Networks and Brain Computing
P. 103
References 91
[33] K.J. Friston, The history of the future of the Bayesian brain, NeuroImage 15 (2) (August
2012) 62e248, 12301233.
[34] Active inference, communication and hermeneutics, Cortex 68 (129143) (2015).
´
[35] P. Erdi, On the ‘dynamic brain’ metaphor, Brain and Mind (2000) 1,119e145.
[36] W.J. Freeman, Consciousness, intentionality, and causality, Journal of Consciousness
Studies 6 (1999) 143e172.
´
[37] P. Erdi, Complexity Explained, Springer Publ, 2007.
[38] C. Frith, Making up the Mind: How the Brain Creates Our Mental World, Blackwell
Publ, 2007.
´
[39] M.A. Arbib, P. Erdi, J. Szenta ´gothai, Neural Organization: Structure, Function,
Dynamics, The MIT Press, Cambridge, Mass, 1997.
[40] K. Craik, The Nature of Explanation, Cambridge Univ. Press, 1943.
[41] A. Barnes, P. Thagard, Empathy and analogy, Dialogue: Canadian Philosophical
Review 36 (1997) 705e720.
[42] M.A. Arbib, The mirror system, imitation, and the evolution of language, in:
C. Nehaniv, K. Dautenhahn (Eds.), Imitation in Animals and Artefacts, MIT Press,
Cambridge, MA, 2002, pp. 229e280.
[43] Y. Choe, N.H. Smith, Motion-based Autonomous Grounding: Inferring External World
Properties from Encoded Internal Sensory States Alone, 2006.
[44] M.A. Arbib, T.N. Mundhenk, Schizophrenia and the mirror system: an essay, Neuropsy-
chologia 43 (2005) 268e280.
[45] K.J. Friston, C.D. Frith, Schizophrenia: a disconnection syndrome? Clinical Neuro-
science 3 (1995) 88e97.
[46] G. Collin, E. Turk, M.P. van den Heuvel, Connectomics in schizophrenia: from early
pioneers to recent brain network findings, Biological Psychiatry: Cognitive Neurosci-
ence and Neuroimaging 1 (2016) 199e208.
´
[47] V. Diwadkar, B. Flaugher, T. Jones, L. Zala ´nyi, M.S. Keshavan, P. Erdi, Impaired
associative learning in schizophrenia: behavioral and computa- tional studies, Cognitive
Neurodynamics 2 (2008) 207e219.
´
[48] P. Erdi, B. Ujfalussy, L. Zala ´nyi, V.A. Diwadkar, Computational approach to schizo-
phrenia: disconnection syndrome and dynamical pharmacology, in: L.M. Ricciardi
(Ed.), A Selection of Papers of the BIOCOMP 2007 International Conference, 2007,
pp. 65e87. Proceedings of the American Institute of Physics 1028.
´
[49] P. Erdi, M. Ba ´nyai, B. Ujfalussy, V. Diwadkar, The schizophrenic brain: a broken her-
meneutic circle, in: Some New Insights and Results the 2011 International Joint Con-
ference on Neural Networks (IJCNN), 2011. San Jos, CA, USA, 2011, pp. 3024e3027.
[50] V. Diwadkar, The schizophrenic brain: a broken hermeneutic circle, Neural Network
World 19 (413e427) (2009).
´
[51] M. Ba ´nyai, V. Diwadkar, P. Erdi, Model-based dynamical analysis of functional discon-
nection in schizophrenia, NeuroImage 58 (3) (2011) 870e877.
[52] J. Klu ¨ver, C. Klu ¨ver, Castellani B: Review: Social Understanding: On Hermeneutics,
Geometrical Models and Artificial Intelligence, 2010.
[53] J. Klu ¨ver, C. Klu ¨ver, Social Understanding: On Hermeneutics, Geometrical Models and
Artificial Intelligence, Springer-Verlag, Berlin, 2010.
[54] W.J. Freeman, How and why brains create meaning from sensory in- formation, Inter-
national Journal of Bifurcation and Chaos 14 (2) (2004) 515530.
[55] R. Kozma, Intentional systems: review of neurodynamics, modeling, and robotics
implementations, Physics of Life Reviews 5 (1) (2007) 121.