@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 dc: <http://purl.org/dc/terms/> .
@prefix uneskos: <http://purl.org/umu/uneskos#> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .

p66:-Homme
  skos:prefLabel "Human"@en, "Homme"@fr ;
  a isothes:ConceptGroup ;
  skos:member p66:-VLJ0CQH4-G .

p66:-D7JMLKQL-B
  skos:prefLabel "semantic prospection"@en, "pensée future sémantique"@fr ;
  a skos:Concept ;
  skos:related p66:-VLJ0CQH4-G .

p66:-N9PQGMCT-N
  skos:prefLabel "episodic future thought"@en, "pensée future épisodique"@fr ;
  a skos:Concept ;
  skos:related p66:-VLJ0CQH4-G .

p66:-JT2DDSSZ-4
  skos:prefLabel "théorie"@fr, "theory"@en ;
  a skos:Concept ;
  skos:narrower p66:-VLJ0CQH4-G .

p66:-VLJ0CQH4-G
  skos:altLabel "active inference"@en, "cerveau prospectif"@fr, "codage prédictif"@fr, "bayesian brain theory"@en, "théorie du traitement prédictif"@fr, "predictive processing framework"@en, "esprit prédictif"@fr, "predictive coding"@en, "predictive coding theory"@en, "théorie du codage prédictif"@fr, "prospective brain"@en, "prospective thought"@en, "bayesian brain"@en, "cerveau bayésien"@fr, "pensée prospective"@fr, "théorie du cerveau bayésien"@fr, "predictive mind"@en, "inférence active"@fr ;
  dc:bibliographicCitation """<span class ="replaced2">	•	 Bottemanne, H., Longuet, Y., & Gauld, C. (2022). L’esprit predictif : Introduction à la théorie du cerveau bayésien. L’Encéphale, 48(4), 436‑444.  <a href="https://doi.org/10.1016/j.encep.2021.09.011">https://doi.org/10.1016/j.encep.2021.09.011</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">	•	 Quent, J. A., Henson, R. N., & Greve, A. (2021). A predictive account of how novelty influences declarative memory. Neurobiology of Learning and Memory, 179, 107382.  <a href="https://doi.org/10.1016/j.nlm.2021.107382">https://doi.org/10.1016/j.nlm.2021.107382</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">open</span></p>"""@en, """<span class ="replaced2">	•	 Bein, O., Gasser, C., Amer, T., Maril, A., & Davachi, L. (2023). Predictions transform memories: How expected versus unexpected events are integrated or separated in memory. Neuroscience & Biobehavioral Reviews, 153, 105368.  <a href="https://doi.org/10.1016/j.neubiorev.2023.105368">https://doi.org/10.1016/j.neubiorev.2023.105368</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, """<span class ="replaced2">	•	 Bein, O., Gasser, C., Amer, T., Maril, A., & Davachi, L. (2023). Predictions transform memories: How expected versus unexpected events are integrated or separated in memory. Neuroscience & Biobehavioral Reviews, 153, 105368.  <a href="https://doi.org/10.1016/j.neubiorev.2023.105368">https://doi.org/10.1016/j.neubiorev.2023.105368</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">	•	 Quent, J. A., Henson, R. N., & Greve, A. (2021). A predictive account of how novelty influences declarative memory. Neurobiology of Learning and Memory, 179, 107382.  <a href="https://doi.org/10.1016/j.nlm.2021.107382">https://doi.org/10.1016/j.nlm.2021.107382</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Miłkowski, M., & Litwin, P. (2022). Testable or bust: Theoretical lessons for predictive processing. Synthese, 200(6), 462.  <a href="https://doi.org/10.1007/s11229-022-03891-9">https://doi.org/10.1007/s11229-022-03891-9</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Vecchi, T., & Gatti, D. (2020). Memory as prediction : From looking back to looking forward. The MIT Press.</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">	•	 Nave, K., Deane, G., Miller, M., & Clark, A. (2020). Wilding the predictive brain. WIREs Cognitive Science, 11(6), e1542.  <a href="https://doi.org/10.1002/wcs.1542">https://doi.org/10.1002/wcs.1542</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Trapp, S., Parr, T., Friston, K., & Schröger, E. (2021). The predictive brain must have a limitation in short-term memory capacity. Current Directions in Psychological Science, 30(5), 384‑390.  <a href="https://doi.org/10.1177/09637214211029977">https://doi.org/10.1177/09637214211029977</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">open</span></p>"""@en, """<span class ="replaced2">	•	 Mangalam, M. (2025). The myth of the Bayesian brain. European Journal of Applied Physiology, 125(10), 2643–2677.  <a href="https://doi.org/10.1007/s00421-025-05855-6">https://doi.org/10.1007/s00421-025-05855-6</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Nave, K., Deane, G., Miller, M., & Clark, A. (2020). Wilding the predictive brain. WIREs Cognitive Science, 11(6), e1542.  <a href="https://doi.org/10.1002/wcs.1542">https://doi.org/10.1002/wcs.1542</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">open</span></p>"""@en, """<span class ="replaced2">	•	 Vecchi, T., & Gatti, D. (2020). Memory as prediction : From looking back to looking forward. The MIT Press.</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, """<span class ="replaced2">	•	 Trapp, S., Parr, T., Friston, K., & Schröger, E. (2021). The predictive brain must have a limitation in short-term memory capacity. Current Directions in Psychological Science, 30(5), 384‑390.  <a href="https://doi.org/10.1177/09637214211029977">https://doi.org/10.1177/09637214211029977</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Mangalam, M. (2025). The myth of the Bayesian brain. European Journal of Applied Physiology, 125(10), 2643–2677.  <a href="https://doi.org/10.1007/s00421-025-05855-6">https://doi.org/10.1007/s00421-025-05855-6</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">open</span></p>"""@en, """<span class ="replaced2">	•	 Bottemanne, H., Longuet, Y., & Gauld, C. (2022). L’esprit predictif : Introduction à la théorie du cerveau bayésien. L’Encéphale, 48(4), 436‑444.  <a href="https://doi.org/10.1016/j.encep.2021.09.011">https://doi.org/10.1016/j.encep.2021.09.011</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, """<span class ="replaced2">	•	 Miłkowski, M., & Litwin, P. (2022). Testable or bust: Theoretical lessons for predictive processing. Synthese, 200(6), 462.  <a href="https://doi.org/10.1007/s11229-022-03891-9">https://doi.org/10.1007/s11229-022-03891-9</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">open</span></p>"""@en, """<span class ="replaced2">	•	 Clark, A. (2022). Extending the predictive mind. Australasian Journal of Philosophy, 0(0), 1–12.  <a href="https://doi.org/10.1080/00048402.2022.2122523">https://doi.org/10.1080/00048402.2022.2122523</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">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Clark, A. (2022). Extending the predictive mind. Australasian Journal of Philosophy, 0(0), 1–12.  <a href="https://doi.org/10.1080/00048402.2022.2122523">https://doi.org/10.1080/00048402.2022.2122523</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">open</span></p>"""@en ;
  skos:related p66:-LCH276BW-0, p66:-N9PQGMCT-N, p66:-D7JMLKQL-B, p66:-SSKGPVQQ-N ;
  uneskos:memberOf p66:-Psychologie, p66:-Animal, p66:-Homme ;
  a skos:Concept ;
  skos:definition "Théorie selon laquelle le cerveau est « essentiellement un dispostif de prédiction probabiliste, dont la tâche consiste à minimiser la disparité entre la façon dont il s'attend (prédit) à ce que le monde soit et les informations présentées par le flux sensoriel » (Nave et al., 2020)."@fr, "Theory according to which the brain is \"essentially a probabilistic prediction engine, dedicated to the task of minimizing the disparity between how it expects (predicts) the world to be and the evidence presented by the sensory flow\" (Nave et al., 2020)."@en ;
  dc:creator "Frank Arnould" ;
  skos:prefLabel "cerveau prédictif"@fr, "predictive brain"@en ;
  skos:broader p66:-JT2DDSSZ-4 ;
  dc:modified "2025-06-27"^^xsd:date ;
  skos:inScheme p66: ;
  dc:created "2021-09-09"^^xsd:date .

p66:-SSKGPVQQ-N
  skos:prefLabel "Predictive Interactive Multiple Memory Systems model"@en, "modèle multisystèmes prédictif et interactif de la mémoire"@fr ;
  a skos:Concept ;
  skos:related p66:-VLJ0CQH4-G .

p66:-LCH276BW-0
  skos:prefLabel "modèle bayésien"@fr, "bayesian model"@en ;
  a skos:Concept ;
  skos:related p66:-VLJ0CQH4-G .

p66:-Psychologie
  skos:prefLabel "Psychologie"@fr, "Psychology"@en ;
  a isothes:ConceptGroup ;
  skos:member p66:-VLJ0CQH4-G .

p66: a skos:ConceptScheme .
p66:-Animal
  skos:prefLabel "Animal non humain"@fr, "Nonhuman animal"@en ;
  a isothes:ConceptGroup ;
  skos:member p66:-VLJ0CQH4-G .

