* Your assessment is very important for improving the work of artificial intelligence, which forms the content of this project
Download From format to function: Embodiment and the functional roles of
Neuroanatomy wikipedia , lookup
Binding problem wikipedia , lookup
Executive functions wikipedia , lookup
Cortical cooling wikipedia , lookup
Aging brain wikipedia , lookup
Holonomic brain theory wikipedia , lookup
Lateralization of brain function wikipedia , lookup
Neuroplasticity wikipedia , lookup
Artificial neural network wikipedia , lookup
Embodied cognition wikipedia , lookup
Neuropsychology wikipedia , lookup
Impact of health on intelligence wikipedia , lookup
Nervous system network models wikipedia , lookup
Types of artificial neural networks wikipedia , lookup
Neuroeconomics wikipedia , lookup
Neural correlates of consciousness wikipedia , lookup
Recurrent neural network wikipedia , lookup
Cognitive neuroscience of music wikipedia , lookup
Neurolinguistics wikipedia , lookup
Music psychology wikipedia , lookup
Development of the nervous system wikipedia , lookup
Cognitive science wikipedia , lookup
Neuroesthetics wikipedia , lookup
Neuropsychopharmacology wikipedia , lookup
Metastability in the brain wikipedia , lookup
Neural binding wikipedia , lookup
Cognitive neuroscience wikipedia , lookup
Time perception wikipedia , lookup
Neural engineering wikipedia , lookup
Neurophilosophy wikipedia , lookup
FROM FORMAT TO FUNCTION Acknowledgements Thanks to Vic Ferreira, Jeff Elman, Seana Coulson, and Rafael Núñez for critical feedback on earlier drafts of this article. References Anderson, M. L. (2010). Neural reuse: A fundamental organizational principle of the brain. Behavioral and Brain Sciences, 33, 245â313 Aydede, M. (1999). What Makes Perceptual Symbols Perceptual? Peer commentary on Barsalou (1999). Behavioral and Brain Sciences, 22, 610-611 Aziz-Zadeh, L., Wilson, S., Rizzolatti, G., & Iacoboni, M. (2006). A comparison of premotor areas activated by action observation and action phrases. Current Biology, 16, 1818-1823. Barsalou, L.W. (1999). Perceptual symbol systems. Behavioral and Brain Sciences, 22, 577-660. Barsalou, L.W. (2008). Grounded cognition. Annual Review of Psychology, 59, 617-645 Barsalou, L.W. (2010). Grounded cognition: Past, present, and future. Topics in Cognitive Science, 2, 716-724. Barsalou, L. W., Santos, A., Simmons, W. K., & Wilson, C. D. (2008). Language and simulation in conceptual processing. In M. De Vega, A. M. Glenberg & A. C. Graesser (Eds.), Symbols, embodiment, and meaning (245â283). Oxford, UK: Oxford University Press. Barsalou, L.W., Simmons, W.K., Barbey, A.L., & Wilson, C.D. (2003). Grounding conceptual knowledge in modality-specific systems. Trends in Cognitive Sciences, 7, 84-91. Bates, E. (1992). Language development. Current Opinion in Neurobiology, 2, 180-185. Bates, E., Wilson, S.M., Saygin, A.P., Dick, F., Sereno, M.I., Knight, R., Dronkers, N. (2003) Voxelbased lesion-symptom mapping. Nature Neuroscience, 6 (5), 448-450. Bechtel, W. (2008). Mental mechanisms: Philosophical perspectives on cognitive neuroscience. London: Routledge. Bergen, B. (2007). Experimental methods for simulation semantics. In M. Gonzalez-Marquez, I. Mittelberg, S. Coulson, and M.J. Spivey (eds.), Methods in Cognitive Linguistics: Ithaca. Bergen, B. (2012). Louder Than Words: The New Science of How the Mind Makes Meaning. New York: Basic Books Bergen, B. & Chang, N. (To appear). Embodied Construction Grammar. In Thomas Hoffmann and Graeme Trousdale (eds.). The Oxford Handbook of Construction Grammar. Oxford. Bergen, B., & Wheeler, K. (2010). Grammatical aspect and mental simulation. Brain & Language, 112, 150-158. 38