@prefix p66: <http://data.loterre.fr/ark:/67375/P66> .
@prefix skos: <http://www.w3.org/2004/02/skos/core#> .
@prefix isothes: <http://purl.org/iso25964/skos-thes#> .
@prefix inist: <http://www.inist.fr/Ontology#> .
@prefix uneskos: <http://purl.org/umu/uneskos#> .
@prefix dc: <http://purl.org/dc/terms/> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .

p66:-Homme
  skos:prefLabel "Human"@en, "Homme"@fr ;
  a isothes:ConceptGroup ;
  skos:member p66:-B3DPH6C2-B .

p66:-KK6LXTL8-P
  skos:prefLabel "mémoire de travail"@fr, "working memory"@en ;
  a skos:Concept ;
  inist:isComponentOf p66:-B3DPH6C2-B .

p66:-MMPD886D-4
  skos:prefLabel "modèle computationnel"@fr, "computational model"@en ;
  a skos:Concept ;
  skos:narrower p66:-B3DPH6C2-B .

p66:-B2CCMJSS-D
  skos:prefLabel "Source of Activation Confusion model"@en, "modèle de la source de confusion de l'activation"@fr ;
  a skos:Concept ;
  skos:related p66:-B3DPH6C2-B .

p66:-DRFF94SX-B
  skos:prefLabel "mémoire procédurale"@fr, "procedural memory"@en ;
  a skos:Concept ;
  inist:isComponentOf p66:-B3DPH6C2-B .

p66:-R9C47FSL-5
  skos:prefLabel "mémoire déclarative"@fr, "declarative memory"@en ;
  a skos:Concept ;
  inist:isComponentOf p66:-B3DPH6C2-B .

p66:-B3DPH6C2-B
  skos:exactMatch <https://www.wikidata.org/wiki/Q288759>, <https://en.wikipedia.org/wiki/ACT-R> ;
  uneskos:memberOf p66:-Psychologie, p66:-Homme ;
  inist:hasComponent p66:-R9C47FSL-5, p66:-DRFF94SX-B, p66:-KK6LXTL8-P ;
  dc:bibliographicCitation """<span class ="replaced2">	•	 Ritter, F. E., Tehranchi, F., & Oury, J. D. (2019). ACT-R: A cognitive architecture for modeling cognition. Wiley Interdisciplinary Reviews: Cognitive Science, 10(3), e1488.  <a href="https://doi.org/10.1002/wcs.1488">https://doi.org/10.1002/wcs.1488</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Document type</span>: <span class="versal">literature review</span></p> <p><span class="tooltip-prop">• Access</span>: <span class="versal">closed</span></p>"""@en, """<span class ="replaced2">	•	 Anderson, J. R., Bothell, D., Byrne, M. D., Douglass, S., Lebiere, C., & Qin, Y. (2004). An integrated theory of the mind. Psychological Review, 111(4), 1036–1060.  <a href="https://doi.org/10.1037/0033-295X.111.4.1036">https://doi.org/10.1037/0033-295X.111.4.1036</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Document type</span>: <span class="versal">empirical study</span></p>, <span class="versal">simulation study</span></p> <p><span class="tooltip-prop">• Access</span>: <span class="versal">closed</span></p>"""@en, """<span class ="replaced2">	•	 Stocco, A., Rice, P., Thomson, R., Smith, B., Morrison, D., & Lebiere, C. (2024). An integrated computational framework for the neurobiology of memory based on the ACT-R declarative memory system. Computational Brain & Behavior, 7(1), 129–149.  <a href="https://doi.org/10.1007/s42113-023-00189-y">https://doi.org/10.1007/s42113-023-00189-y</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Document type</span>: <span class="versal">literature review</span></p>, <span class="versal">simulation study</span></p> <p><span class="tooltip-prop">• Access</span>: <span class="versal">open</span></p>"""@en, """<span class ="replaced2">	•	 Anderson, J. R., Bothell, D., Byrne, M. D., Douglass, S., Lebiere, C., & Qin, Y. (2004). An integrated theory of the mind. Psychological Review, 111(4), 1036–1060.  <a href="https://doi.org/10.1037/0033-295X.111.4.1036">https://doi.org/10.1037/0033-295X.111.4.1036</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Type de document</span> : <span class="versal">étude empirique</span></p>, <span class="versal">étude de simulation</span></p> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">fermé</span></p>"""@fr, """<span class ="replaced2">	•	 Stocco, A., Rice, P., Thomson, R., Smith, B., Morrison, D., & Lebiere, C. (2024). An integrated computational framework for the neurobiology of memory based on the ACT-R declarative memory system. Computational Brain & Behavior, 7(1), 129–149.  <a href="https://doi.org/10.1007/s42113-023-00189-y">https://doi.org/10.1007/s42113-023-00189-y</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Type de document</span> : <span class="versal">revue de la littérature</span></p>, <span class="versal">étude de simulation</span></p> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Ritter, F. E., Tehranchi, F., & Oury, J. D. (2019). ACT-R: A cognitive architecture for modeling cognition. Wiley Interdisciplinary Reviews: Cognitive Science, 10(3), e1488.  <a href="https://doi.org/10.1002/wcs.1488">https://doi.org/10.1002/wcs.1488</a></span> <span class="reified-property-value xl-pref-label tooltip-html"><p><img src="resource/pics/infoBlue.png"/>	</p><div class="reified-tooltip tooltip-html-content"><p><span class="tooltip-prop">• Type de document</span> : <span class="versal">revue de la littérature</span></p> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">fermé</span></p>"""@fr ;
  dc:created "2017-12-04"^^xsd:date ;
  dc:creator "Frank Arnould" ;
  skos:altLabel "Adaptive Control of Thought-Rational"@fr, "ACT-R"@fr, "ACT-R"@en ;
  skos:inScheme p66: ;
  skos:broader p66:-MMPD886D-4 ;
  skos:definition "ACT-R est une architecture cognitive qui propose une théorie unifiée de la cognition. La théorie comprend différents modules (en particulier, des modules perceptivo-moteurs, de mémoire déclarative, de buts, de mémoire procédurale, de mémoire de travail). Elle décrit la manière dont leur fonctionnement est intégré pour produire un comportement, ainsi que les régions cérébrales associées. ACT-R est une théorie hybride, associant des traitements sériels à des traitements parallèles de l’information et possède un niveau symbolique (règles, faits, buts) et un niveau subsymbolique. Elle permet de créer des modèles de simulation de la cognition, dont des modèles de l’apprentissage et de la mémoire."@fr, "\"ACT-R is a theory of the mechanisms that make up cognition, a cognitive architecture. The theory posits a fixed set of mechanisms that use task knowledge to perform a task thereby predicting and explaining the steps of cognition that form human behavior. Thus, it is one example of a unified theory of cognition […]. Currently, it also predicts the activation of brain regions used to generate behavior by using mechanisms that make use of procedural (how to do a task) and declarative (facts about the world) knowledge, and working memory as activation, to perform tasks.\" (Ritter et al., 2019)."@en ;
  dc:modified "2024-04-29"^^xsd:date ;
  skos:prefLabel "Adaptive Control of Thought-Rational"@en, "Contrôle adaptatif de la pensée-Rationnel"@fr ;
  a skos:Concept ;
  skos:related p66:-B2CCMJSS-D .

p66:-Psychologie
  skos:prefLabel "Psychologie"@fr, "Psychology"@en ;
  a isothes:ConceptGroup ;
  skos:member p66:-B3DPH6C2-B .

p66: a skos:ConceptScheme .
