@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 jvr: <http://data.loterre.fr/ark:/67375/JVR> .
@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:-R3JZHQ7F-F .

p66:-QC6M3NL9-P
  skos:prefLabel "neurotransmetteur"@fr, "neurotransmitter"@en ;
  a skos:Concept ;
  skos:narrower p66:-R3JZHQ7F-F .

p66:-R3JZHQ7F-F
  skos:exactMatch <http://data.loterre.fr/ark:/67375/2CX-C1B3GQ4P-R>, <https://fr.wikipedia.org/wiki/Acétylcholine>, jvr:-GRSLD3QW-Q, <https://en.wikipedia.org/wiki/Acetylcholine>, <https://www.wikidata.org/wiki/Q180623> ;
  dc:bibliographicCitation """<span class ="replaced2">	•	 Micheau, J., & Marighetto, A. (2011). Acetylcholine and memory: A long, complex and chaotic but still living relationship. Behavioural Brain Research, 221(2), 424–429.  <a href="https://doi.org/10.1016/j.bbr.2010.11.052">https://doi.org/10.1016/j.bbr.2010.11.052</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">	•	 Decker, A. L., & Duncan, K. (2020). Acetylcholine and the complex interdependence of memory and attention. Current Opinion in Behavioral Sciences, 32, 21–28.  <a href="https://doi.org/10.1016/j.cobeha.2020.01.013">https://doi.org/10.1016/j.cobeha.2020.01.013</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">	•	 Decker, A. L., & Duncan, K. (2020). Acetylcholine and the complex interdependence of memory and attention. Current Opinion in Behavioral Sciences, 32, 21–28.  <a href="https://doi.org/10.1016/j.cobeha.2020.01.013">https://doi.org/10.1016/j.cobeha.2020.01.013</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">	•	 Micheau, J., & Marighetto, A. (2011). Acetylcholine and memory: A long, complex and chaotic but still living relationship. Behavioural Brain Research, 221(2), 424–429.  <a href="https://doi.org/10.1016/j.bbr.2010.11.052">https://doi.org/10.1016/j.bbr.2010.11.052</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 ;
  uneskos:memberOf p66:-Animal, p66:-Homme ;
  dc:creator "Frank Arnould" ;
  skos:inScheme p66: ;
  skos:prefLabel "acetylcholine"@en, "acétylcholine"@fr ;
  skos:altLabel "ACh"@fr, "ACh"@en ;
  a skos:Concept ;
  skos:definition "Neurotransmetteur impliqué dans les processus d’apprentissage et de mémoire. En particulier, dans l’hippocampe, l’ACh jouerait un rôle dans la mémoire relationnelle, la coordination de systèmes cérébraux de la mémoire (l’amygdale pour la mémoire émotionnelle, le striatum pour la mémoire procédurale). Un taux élevé d’ACh dans l’hippocampe facilite l’encodage des informations en mémoire, alors qu’un niveau faible d’ACh permet la consolidation de nouveaux souvenirs (Micheau & Marighetto, 2011). Les récepteurs de l’ACh sont les récepteurs nicotiniques et muscariniques."@fr, "Neurotransmitter involved in learning and memory processes. In particular, in the hippocampus, ACh plays a role in relational memory, coordination of brain systems memory (amygdala for emotional memory, the striatum for procedural memory). A high level of ACh in the hippocampus facilitates the encoding of information in memory, whereas a low level of ACh allows the consolidation of new memories (Micheau & Marighetto, 2011). ACh receptors are nicotinic and muscarinic receptors."@en ;
  dc:modified "2021-08-09"^^xsd:date ;
  skos:broader p66:-QC6M3NL9-P ;
  dc:created "2017-12-04"^^xsd:date .

p66: a skos:ConceptScheme .
p66:-Animal
  skos:prefLabel "Animal non humain"@fr, "Nonhuman animal"@en ;
  a isothes:ConceptGroup ;
  skos:member p66:-R3JZHQ7F-F .

