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Lundi : 8h-18h30
Mardi : 8h-17h30
Mercredi 9h-16h30
Jeudi : 8h30-18h30
Vendredi : 8h30-12h30 et 13h-14h30
Votre centre de documentation sera exceptionnellement fermé de 12h30 à 13h ce lundi 18 novembre.
Egalement, il sera fermé de 12h30 à 13h30 ce mercredi 20 novembre.
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Auteur Hang Lu |
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Digging deeper: methodologies for high-content phenotyping in Caenorhabditis elegans / Dhaval S. Patel in LabAnimal, 08/19 (août 2019)
[article]
Titre : Digging deeper: methodologies for high-content phenotyping in Caenorhabditis elegans Type de document : texte imprimé Auteurs : Dhaval S. Patel ; Nan Xu ; Hang Lu Année de publication : 2019 Article en page(s) : p. 17-27 Langues : Anglais (eng) Résumé : Deep phenotyping is an emerging conceptual paradigm and experimental approach aimed at measuring and linking many aspects of a phenotype to understand its underlying biology. To date, deep phenotyping has been applied mostly in cultured cells and used less in multicellular organisms. However, in the past decade, it has increasingly been recognized that deep phenotyping could lead to a better understanding of how genetics, environment and stochasticity affect the development, physiology and behavior of an organism. The nematode Caenorhabditis elegans is an invaluable model system for studying how genes affect a phenotypic trait, and new technologies have taken advantage of the worm’s physical attributes to increase the throughput and informational content of experiments. Coupling of these technical advancements with computational and analytical tools has enabled a boom in deep-phenotyping studies of C. elegans. In this Review, we highlight how these new technologies and tools are digging into the biological origins of complex, multidimensional phenotypes. Permalink : ./index.php?lvl=notice_display&id=80089
in LabAnimal > 08/19 (août 2019) . - p. 17-27[article] Digging deeper: methodologies for high-content phenotyping in Caenorhabditis elegans [texte imprimé] / Dhaval S. Patel ; Nan Xu ; Hang Lu . - 2019 . - p. 17-27.
Langues : Anglais (eng)
in LabAnimal > 08/19 (août 2019) . - p. 17-27
Résumé : Deep phenotyping is an emerging conceptual paradigm and experimental approach aimed at measuring and linking many aspects of a phenotype to understand its underlying biology. To date, deep phenotyping has been applied mostly in cultured cells and used less in multicellular organisms. However, in the past decade, it has increasingly been recognized that deep phenotyping could lead to a better understanding of how genetics, environment and stochasticity affect the development, physiology and behavior of an organism. The nematode Caenorhabditis elegans is an invaluable model system for studying how genes affect a phenotypic trait, and new technologies have taken advantage of the worm’s physical attributes to increase the throughput and informational content of experiments. Coupling of these technical advancements with computational and analytical tools has enabled a boom in deep-phenotyping studies of C. elegans. In this Review, we highlight how these new technologies and tools are digging into the biological origins of complex, multidimensional phenotypes. Permalink : ./index.php?lvl=notice_display&id=80089 Réservation
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