Pokaż uproszczony rekord

dc.contributor.authorRudnicki, Konrad
dc.contributor.editorŁukowski, Piotr
dc.contributor.editorGemel, Aleksander
dc.contributor.editorŻukowski, Bartosz
dc.date.accessioned2020-10-08T12:31:34Z
dc.date.available2020-10-08T12:31:34Z
dc.date.issued2015
dc.identifier.citationRudnicki K., Neurobiological basis for emergence of notions, [w:] Cognition, Meaning and Action. Lodz-Lund Studies in Cognitive Science, Łukowski P., Gemel A., Żukowski B. (red.), Wydawnictwo Uniwersytetu Łódzkiego, Wydawnictwo Uniwersytetu Jagiellońskiego, Łódź-Kraków 2015, s. 51-62, doi: 10.18778/7969-759-5.04pl_PL
dc.identifier.isbn978-83-7969-759-5
dc.identifier.urihttp://hdl.handle.net/11089/32313
dc.description.sponsorshipUdostępnienie publikacji Wydawnictwa Uniwersytetu Łódzkiego finansowane w ramach projektu „Doskonałość naukowa kluczem do doskonałości kształcenia”. Projekt realizowany jest ze środków Europejskiego Funduszu Społecznego w ramach Programu Operacyjnego Wiedza Edukacja Rozwój; nr umowy: POWER.03.05.00-00-Z092/17-00.pl_PL
dc.language.isoenpl_PL
dc.publisherWydawnictwo Uniwersytetu Łódzkiego, Wydawnictwo Uniwersytetu Jagiellońskiegopl_PL
dc.relation.ispartofŁukowski P., Gemel A., Żukowski B. (red.), Cognition, Meaning and Action. Lodz-Lund Studies in Cognitive Science, Wydawnictwo Uniwersytetu Łódzkiego, Wydawnictwo Uniwersytetu Jagiellońskiego, Łódź-Kraków 2015;
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Międzynarodowe*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subjectneurobiological basispl_PL
dc.subjectemergence of notionspl_PL
dc.titleNeurobiological basis for emergence of notionspl_PL
dc.typeBook chapterpl_PL
dc.page.number51-62pl_PL
dc.contributor.authorAffiliationUniwersytet Łódzki, Departament of Cognitive Sciencepl_PL
dc.identifier.eisbn978-83-7969-760-1
dc.contributor.authorBiographicalnoteKonrad Rudnicki is psychology student. Member of seminar at the Cognitive Science Department, Institute of Psychology, University of Łódź. Collaborator at the Department of Neurobiology, University of Łódź. His main research interest concern fuzzy sets theory, neurobiological aspects of cognition, formal-logical tools in psychology, neurochemistry of catecholamine metabolism.pl_PL
dc.referencesAtlan, H., Cohen, I.R. (1998). Immune information, self-organization and meaning. International Immunology 10 (6): 711–717.pl_PL
dc.referencesBedny, M., Caramazza, A. (2011). Perception, action, and word meanings in the human brain: The case from action verbs. Annals of the New York Academy of Sciences 1224 (1): 81–95.pl_PL
dc.referencesBinder, J.R., Desai, R.H. (2011). The neurobiology of semantic memory. Trends in cognitive sciences 15 (11): 527–536.pl_PL
dc.referencesCarlson, T.A., Simmons, R.A., Kriegeskorte, N., Slevc, L.R. (2014). The emergence of semantic meaning in the ventral temporal pathway. Journal of cognitive neuroscience 26 (1): 120–131.pl_PL
dc.referencesCatani, M., Jones, D.K. (2005). Perisylvian language networks of the human brain. Annals of neurology 57 (1): 8–16.pl_PL
dc.referencesChatterjee, A. (2010). Disembodying cognition. Language and cognition 2 (1): 79–116.pl_PL
dc.referencesDuch, W., Dobosz, K. (2011). Visualization for understanding of neurodynamical systems. Cognitive Neurodynamics 5 (2): 145–160.pl_PL
dc.referencesFingelkurts, A.A., Fingelkurts, A.A. (2001). Operational architectonics of the human brain biopotential field: Towards solving the mind-brain problem. Brain and Mind 2 (3): 261–296.pl_PL
dc.referencesFischer, J., Whitney, D. (2014). Serial dependence in visual perception. Nature neuroscience 17: 738–743.pl_PL
dc.referencesFoo, N., Low, B.T. (2008). A Note on Prototypes, Convexity and Fuzzy Sets. Studia Logica 90 (1): 125–137.pl_PL
dc.referencesFoxe, J.J., Schroeder, C.E. (2005). The case for feedforward multisensory convergence during early cortical processing. Neuroreport 16 (5): 419–423.pl_PL
dc.referencesFreeman, W.J., (1998). The neurobiology of multimodal sensory integration. Integrative physiological and behavioral science 33 (2): 124–129.pl_PL
dc.referencesFreeman, W.J. (2004). How and why brains create meaning from sensory information. International journal of bifurcation and chaos 14 (2): 515–530.pl_PL
dc.referencesHart, S.J., Green, S.R., Casp, M., Belger, A. (2010). Emotional priming effects during Stroop task performance. Neuroimage 49 (3): 2662–2670.pl_PL
dc.referencesHauk, O., Johnsrude, I., Pulvermüller, F. (2004). Somatotopic representation of action words in human motor and premotor cortex. Neuron 41 (2): 301–307.pl_PL
dc.referencesŁukowski, P. (2015). Two procedures expanding a linguistic competence. In: P. Łukowski, A. Gemel, B. Żukowski (eds.), Cognition, Meaning and Action. Lodz-Lund Studies in Cognitive Science. Łódź: Wydawnictwo Uniwersytetu Łódzkiego.pl_PL
dc.referencesMartin, A. (2007). The representation of object concepts in the brain. Annual Reviews Psychology 58: 25–45.pl_PL
dc.referencesMcNamara, T.P. (2005). Semantic priming: Perspectives from memory and word recognition. New York: Psychology Press.pl_PL
dc.referencesOwen, A.M., Coleman, M.R., Boly, M., Davis, M.H., Laureys, S., Pickard, J.D. (2006). Detecting awareness in the vegetative state. Science 313 (5792): 1402.pl_PL
dc.referencesPanizza, D. (2012). Formal neurosemantics. Logic, meaning and composition in the brain. Journal of Neurolinguistics 25 (5): 460–488.pl_PL
dc.referencesPrice, C.J. (1998). The functional anatomy of word comprehension and production. Trends in cognitive sciences 2 (8): 281–288.pl_PL
dc.referencesPulvermüller, F. (2012). Meaning and the brain: The neurosemantics of referential, interactive, and combinatorial knowledge. Journal of Neurolinguistics 25 (5): 423–459.pl_PL
dc.referencesRaichle, M.E. (2010). Two views of brain function. Trends in cognitive sciences 14 (4): 180–190.pl_PL
dc.referencesTsumoto, T. (1992). Long-term potentiation and long-term depression in the neocortex. Progress in neurobiology 39 (2): 209–228.pl_PL
dc.referencesZeki, S., Romaya, J.P., Benincasa, D.M., Atiyah, M.F. (2014). The experience of mathematical beauty and its neural correlates. Frontiers in human neuroscience 8: 1–12.pl_PL
dc.identifier.doi10.18778/7969-759-5.04


Pliki tej pozycji

Thumbnail
Thumbnail
Thumbnail

Pozycja umieszczona jest w następujących kolekcjach

Pokaż uproszczony rekord

Attribution-NonCommercial-NoDerivatives 4.0 Międzynarodowe
Poza zaznaczonymi wyjątkami, licencja tej pozycji opisana jest jako Attribution-NonCommercial-NoDerivatives 4.0 Międzynarodowe