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

p66:-QXWD8ZSB-9
  skos:prefLabel "brain"@en, "encéphale"@fr ;
  a skos:Concept ;
  skos:related p66:-D1VKHDQG-3 .

p66:-RQWF016Q-4
  skos:prefLabel "phénomène de la mémoire"@fr, "memory phenomenon"@en ;
  a skos:Concept ;
  skos:narrower p66:-D1VKHDQG-3 .

p66:-RN0GL886-1
  skos:prefLabel "effet de la mémoire subséquente négatif"@fr, "negative subsequent memory effect"@en ;
  a skos:Concept ;
  skos:broader p66:-D1VKHDQG-3 .

p66:-D1VKHDQG-3
  a skos:Concept ;
  skos:exactMatch <https://www.wikidata.org/wiki/Q5275272> ;
  dc:bibliographicCitation """<span class ="replaced2">	•	 Halpern, D. J., Tubridy, S., Davachi, L., & Gureckis, T. M. (2023). Identifying causal subsequent memory effects. Proceedings of the National Academy of Sciences, 120(13), e2120288120.  <a href="https://doi.org/10.1073/pnas.2120288120">https://doi.org/10.1073/pnas.2120288120</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> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">ouvert</span></p>"""@fr, """<span class ="replaced2">	•	 Kim, H. (2011). Neural activity that predicts subsequent memory and forgetting: A meta-analysis of 74 fMRI studies. NeuroImage, 54(3), 2446-2461.  <a href="https://doi.org/10.1016/j.neuroimage.2010.09.045">https://doi.org/10.1016/j.neuroimage.2010.09.045</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">méta-analyse</span></p> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">fermé</span></p>"""@fr, """<span class ="replaced2">	•	 Paller, K. A., Kutas, M., & Mayes, A. R. (1987). Neural correlates of encoding in an incidental learning paradigm. Electroencephalography and Clinical Neurophysiology, 67(4), 360–371.  <a href="https://doi.org/10.1016/0013-4694(87)90124-6">https://doi.org/10.1016/0013-4694(87)90124-6</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">étude empirique</span></p> <p><span class="tooltip-prop">• Accès</span> : <span class="versal">fermé</span></p>"""@fr, """<span class ="replaced2">	•	 Halpern, D. J., Tubridy, S., Davachi, L., & Gureckis, T. M. (2023). Identifying causal subsequent memory effects. Proceedings of the National Academy of Sciences, 120(13), e2120288120.  <a href="https://doi.org/10.1073/pnas.2120288120">https://doi.org/10.1073/pnas.2120288120</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> <p><span class="tooltip-prop">• Access</span>: <span class="versal">open</span></p>"""@en, """<span class ="replaced2">	•	 Mecklinger, A., & Kamp, S.-M. (2023). Observing memory encoding while it unfolds: Functional interpretation and current debates regarding ERP subsequent memory effects. Neuroscience & Biobehavioral Reviews, 153, 105347.  <a href="https://doi.org/10.1016/j.neubiorev.2023.105347">https://doi.org/10.1016/j.neubiorev.2023.105347</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">	•	 Gonthier, C., & Hot, P. (2013). Apports de l’électroencéphalographie à la compréhension de la mémoire. Revue de Neuropsychologie, 5(4), 243–254.  <a href="https://doi.org/10.1684/nrp.2013.0280">https://doi.org/10.1684/nrp.2013.0280</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">	•	 Wilding, E. L., & Ranganath, C. (2011). Electrophysiological correlates of episodic memory processes. In S. J. Luck & E. M. Kappenman (Éds.), The Oxford Handbook of ERP Components (p. 373–396). Oxford University 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">	•	 Wilding, E. L., & Ranganath, C. (2011). Electrophysiological correlates of episodic memory processes. In S. J. Luck & E. M. Kappenman (Éds.), The Oxford Handbook of ERP Components (p. 373–396). Oxford University 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">	•	 Kim, H. (2011). Neural activity that predicts subsequent memory and forgetting: A meta-analysis of 74 fMRI studies. NeuroImage, 54(3), 2446-2461.  <a href="https://doi.org/10.1016/j.neuroimage.2010.09.045">https://doi.org/10.1016/j.neuroimage.2010.09.045</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">meta-analysis</span></p> <p><span class="tooltip-prop">• Access</span>: <span class="versal">closed</span></p>"""@en, """<span class ="replaced2">	•	 Mecklinger, A., & Kamp, S.-M. (2023). Observing memory encoding while it unfolds: Functional interpretation and current debates regarding ERP subsequent memory effects. Neuroscience & Biobehavioral Reviews, 153, 105347.  <a href="https://doi.org/10.1016/j.neubiorev.2023.105347">https://doi.org/10.1016/j.neubiorev.2023.105347</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">	•	 Gonthier, C., & Hot, P. (2013). Apports de l’électroencéphalographie à la compréhension de la mémoire. Revue de Neuropsychologie, 5(4), 243–254.  <a href="https://doi.org/10.1684/nrp.2013.0280">https://doi.org/10.1684/nrp.2013.0280</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">	•	 Paller, K. A., Kutas, M., & Mayes, A. R. (1987). Neural correlates of encoding in an incidental learning paradigm. Electroencephalography and Clinical Neurophysiology, 67(4), 360–371.  <a href="https://doi.org/10.1016/0013-4694(87)90124-6">https://doi.org/10.1016/0013-4694(87)90124-6</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">empirical study</span></p> <p><span class="tooltip-prop">• Access</span>: <span class="versal">closed</span></p>"""@en ;
  skos:altLabel "effet Dm"@fr, "Dm effect"@en, "difference due to memory"@en ;
  skos:narrower p66:-D5BFB81S-C, p66:-RN0GL886-1 ;
  skos:prefLabel "effet de la mémoire subséquente"@fr, "subsequent memory effect"@en ;
  dc:modified "2025-11-21"^^xsd:date ;
  dc:creator "Frank Arnould" ;
  dc:created "2017-12-04"^^xsd:date ;
  skos:related p66:-QXWD8ZSB-9 ;
  skos:broader p66:-RQWF016Q-4 ;
  uneskos:memberOf p66:-Homme, p66:-Psychophysiologie ;
  skos:definition "A memory phenomenon observed when the neural activity of the brain during encoding differs depending on whether the items will be subsequently retrieved or not."@en, "Phénomène de la mémoire observé lorsque l'activité nerveuse du cerveau au moment de l'encodage est différente selon que les items seront récupérés ou non ultérieurement."@fr ;
  skos:inScheme p66: .

p66:-Psychophysiologie
  skos:prefLabel "Psychophysiologie"@fr, "Psychophysiology"@en ;
  a isothes:ConceptGroup ;
  skos:member p66:-D1VKHDQG-3 .

p66: a skos:ConceptScheme .
p66:-D5BFB81S-C
  skos:prefLabel "positive subsequent memory effect"@en, "effet de la mémoire subséquente positif"@fr ;
  a skos:Concept ;
  skos:broader p66:-D1VKHDQG-3 .

p66:-Homme
  skos:prefLabel "Human"@en, "Homme"@fr ;
  a isothes:ConceptGroup ;
  skos:member p66:-D1VKHDQG-3 .

