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Journal Abstract Search


158 related items for PubMed ID: 26598068

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  • 2. Potential cognitive endophenotypes in multigenerational families: segregating ADHD from a genetic isolate.
    Pineda DA, Lopera F, Puerta IC, Trujillo-Orrego N, Aguirre-Acevedo DC, Hincapié-Henao L, Arango CP, Acosta MT, Holzinger SI, Palacio JD, Pineda-Alvarez DE, Velez JI, Martinez AF, Lewis JE, Muenke M, Arcos-Burgos M.
    Atten Defic Hyperact Disord; 2011 Sep; 3(3):291-9. PubMed ID: 21779842
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  • 4. Pedigree disequilibrium test (PDT) replicates association and linkage between DRD4 and ADHD in multigenerational and extended pedigrees from a genetic isolate.
    Arcos-Burgos M, Castellanos FX, Konecki D, Lopera F, Pineda D, Palacio JD, Rapoport JL, Berg K, Bailey-Wilson J, Muenke M.
    Mol Psychiatry; 2004 Mar; 9(3):252-9. PubMed ID: 15094785
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  • 5. Testing for the mediating role of endophenotypes using molecular genetic data in a twin study of ADHD traits.
    Pinto R, Asherson P, Ilott N, Cheung CH, Kuntsi J.
    Am J Med Genet B Neuropsychiatr Genet; 2016 Oct; 171(7):982-92. PubMed ID: 27230021
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  • 7. PPP2R2C as a candidate gene of a temperament and character trait-based endophenotype of ADHD.
    Jacob C, Nguyen TT, Weißflog L, Herrmann M, Liedel S, Zamzow K, Jans T, Renner T, Reichert S, Groß-Lesch S, Lesch KP, Reif A.
    Atten Defic Hyperact Disord; 2012 Sep; 4(3):145-52. PubMed ID: 22664926
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  • 11. A review on cognitive and brain endophenotypes that may be common in autism spectrum disorder and attention-deficit/hyperactivity disorder and facilitate the search for pleiotropic genes.
    Rommelse NN, Geurts HM, Franke B, Buitelaar JK, Hartman CA.
    Neurosci Biobehav Rev; 2011 May; 35(6):1363-96. PubMed ID: 21382410
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  • 12. A common variant of the latrophilin 3 gene, LPHN3, confers susceptibility to ADHD and predicts effectiveness of stimulant medication.
    Arcos-Burgos M, Jain M, Acosta MT, Shively S, Stanescu H, Wallis D, Domené S, Vélez JI, Karkera JD, Balog J, Berg K, Kleta R, Gahl WA, Roessler E, Long R, Lie J, Pineda D, Londoño AC, Palacio JD, Arbelaez A, Lopera F, Elia J, Hakonarson H, Johansson S, Knappskog PM, Haavik J, Ribases M, Cormand B, Bayes M, Casas M, Ramos-Quiroga JA, Hervas A, Maher BS, Faraone SV, Seitz C, Freitag CM, Palmason H, Meyer J, Romanos M, Walitza S, Hemminger U, Warnke A, Romanos J, Renner T, Jacob C, Lesch KP, Swanson J, Vortmeyer A, Bailey-Wilson JE, Castellanos FX, Muenke M.
    Mol Psychiatry; 2010 Nov; 15(11):1053-66. PubMed ID: 20157310
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  • 15. Neuropsychological and dimensional behavioral trait profiles in Costa Rican ADHD sib pairs: Potential intermediate phenotypes for genetic studies.
    Peskin VA, Ordóñez A, Mackin RS, Delucchi K, Monge S, McGough JJ, Chavira DA, Berrocal M, Cheung E, Fournier E, Badner JA, Herrera LD, Mathews CA.
    Am J Med Genet B Neuropsychiatr Genet; 2015 Jun; 168B(4):247-57. PubMed ID: 25832558
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  • 16. Neuropsychological endophenotype approach to genome-wide linkage analysis identifies susceptibility loci for ADHD on 2q21.1 and 13q12.11.
    Rommelse NN, Arias-Vásquez A, Altink ME, Buschgens CJ, Fliers E, Asherson P, Faraone SV, Buitelaar JK, Sergeant JA, Oosterlaan J, Franke B.
    Am J Hum Genet; 2008 Jul; 83(1):99-105. PubMed ID: 18599010
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  • 17. Are endophenotypes based on measures of executive functions useful for molecular genetic studies of ADHD?
    Doyle AE, Faraone SV, Seidman LJ, Willcutt EG, Nigg JT, Waldman ID, Pennington BF, Peart J, Biederman J.
    J Child Psychol Psychiatry; 2005 Jul; 46(7):774-803. PubMed ID: 15972070
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