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Molecular genetic aetiology of general cognitive function is enriched in evolutionarily conserved regions

Molecular genetic aetiology of general cognitive function is enriched in evolutionarily conserved regions

10.1038/tp.2016.246

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Bibliographic Details
Main Authors: Hill, W.D, Davies, G, Harris, S.E, Hagenaars, S.P, Liewald, D.C, Penke, L, Gale, C.R, Deary, I.J, Debette, S, Verbaas, C.I, Bressler, J, Schuur, M, Smith, A.V, Bis, J.C, Bennett, D.A, Ikram, M.A, Launer, L.J, Fitzpatrick, A.L, Seshadri, S, Van Duijn, C.M, Mosley, T.H
Other Authors: DUKE-NUS MEDICAL SCHOOL
Format: Article
Published: Springer Nature 2020
Subjects:
histone
Article
biobank
cognition
gene linkage disequilibrium
genome
genome-wide association study
molecular genetics
pleiotropy
single nucleotide polymorphism
aged
brain
conserved sequence
female
genetic variation
genetics
human
male
middle aged
molecular biology
molecular evolution
neuropsychological test
phenotype
physiology
problem solving
statistics
Aged
Brain
Cognition
Conserved Sequence
Evolution, Molecular
Female
Genetic Variation
Genome-Wide Association Study
Humans
Linkage Disequilibrium
Male
Middle Aged
Molecular Biology
Neuropsychological Tests
Phenotype
Polymorphism, Single Nucleotide
Problem Solving
Statistics as Topic
Online Access:https://scholarbank.nus.edu.sg/handle/10635/183585
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Institution: National University of Singapore
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Internet

https://scholarbank.nus.edu.sg/handle/10635/183585

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