Genome-wide association studies in Alzheimer disease.
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[1] K. Sleegers,et al. A genomewide screen for late-onset Alzheimer disease in a genetically isolated Dutch population. , 2007, American journal of human genetics.
[2] J. Ott,et al. Complement Factor H Polymorphism in Age-Related Macular Degeneration , 2005, Science.
[3] Winnie S. Liang,et al. GAB2 Alleles Modify Alzheimer's Risk in APOE ɛ4 Carriers , 2007, Neuron.
[4] G. Schellenberg,et al. Candidate gene for the chromosome 1 familial Alzheimer's disease locus , 1995, Science.
[5] R. Tanzi,et al. A genetic dichotomy model for the inheritance of Alzheimer's disease and common age-related disorders. , 1999, The Journal of clinical investigation.
[6] B. Charlesworth,et al. A polygenic basis for late-onset disease. , 2003, Trends in genetics : TIG.
[7] J. Gilbert,et al. Complement Factor H Variant Increases the Risk of Age-Related Macular Degeneration , 2005, Science.
[8] E. Lander. The New Genomics: Global Views of Biology , 1996, Science.
[9] M. Olivier. A haplotype map of the human genome , 2003, Nature.
[10] Winnie S. Liang,et al. GAB2 alleles modify Alzheimer's risk in APOE epsilon4 carriers. , 2007, Neuron.
[11] K. Lunetta,et al. The neuronal sortilin-related receptor SORL1 is genetically associated with Alzheimer disease , 2007, Nature Genetics.
[12] R. Klein,et al. Power analysis for genome-wide association studies , 2007, BMC Genetics.
[13] C. DeCarli,et al. Genetic correlates of brain aging on MRI and cognitive test measures: a genome-wide association and linkage analysis in the Framingham study , 2007, BMC Medical Genetics.
[14] M. Daly,et al. Evaluating and improving power in whole-genome association studies using fixed marker sets , 2006, Nature Genetics.
[15] A. Di Rienzo. Population genetics models of common diseases. , 2006, Current opinion in genetics & development.
[16] S. DeKosky,et al. Gender-specific association of ATP-binding cassette transporter 1 (ABCA1) polymorphisms with the risk of late-onset Alzheimer's disease , 2007, Neurobiology of Aging.
[17] Lon R Cardon,et al. Evaluating coverage of genome-wide association studies , 2006, Nature Genetics.
[18] M. Pericak-Vance,et al. Apolipoprotein E: high-avidity binding to beta-amyloid and increased frequency of type 4 allele in late-onset familial Alzheimer disease. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[19] D. Blacker,et al. Systematic meta-analyses of Alzheimer disease genetic association studies: the AlzGene database , 2007, Nature Genetics.
[20] Genome-wide association studies and ALS: are we there yet? , 2007, The Lancet Neurology.
[21] M. Gill,et al. Evidence for novel susceptibility genes for late-onset Alzheimer's disease from a genome-wide association study of putative functional variants. , 2007, Human molecular genetics.
[22] Yaakov Stern,et al. The association between genetic variants in SORL1 and Alzheimer disease in an urban, multiethnic, community-based cohort. , 2007, Archives of neurology.
[23] J. Hardy,et al. The Amyloid Hypothesis of Alzheimer ’ s Disease : Progress and Problems on the Road to Therapeutics , 2009 .
[24] P. Donnelly,et al. Replicating genotype–phenotype associations , 2007, Nature.
[25] Taylor J. Maxwell,et al. DAPK1 variants are associated with Alzheimer's disease and allele-specific expression. , 2006, Human molecular genetics.
[26] D. Blacker,et al. Family-based association between Alzheimer's disease and variants in UBQLN1. , 2005, The New England journal of medicine.
[27] Simon C. Potter,et al. Genome-wide association study of 14,000 cases of seven common diseases and 3,000 shared controls , 2007, Nature.
[28] A. Edwards,et al. Complement Factor H Polymorphism and Age-Related Macular Degeneration , 2005, Science.
[29] J. Rommens,et al. Familial Alzheimer's disease in kindreds with missense mutations in a gene on chromosome 1 related to the Alzheimer's disease type 3 gene , 1995, Nature.
[30] J. Gilbert,et al. Lewy body and Alzheimer pathology in a family with the amyloid-β precursor protein APP717 gene mutation , 2000, Acta Neuropathologica.
[31] M. Pericak-Vance,et al. Segregation of a missense mutation in the amyloid precursor protein gene with familial Alzheimer's disease , 1991, Nature.
[32] Steven J. Schrodi,et al. Association of late-onset Alzheimer's disease with genetic variation in multiple members of the GAPD gene family. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[33] Rebecca F. Halperin,et al. A high-density whole-genome association study reveals that APOE is the major susceptibility gene for sporadic late-onset Alzheimer's disease. , 2007, The Journal of clinical psychiatry.
[34] G. Abecasis,et al. Joint analysis is more efficient than replication-based analysis for two-stage genome-wide association studies , 2006, Nature Genetics.
[35] A. Myers,et al. Common genetic variation within the Low-Density Lipoprotein Receptor-Related Protein 6 and late-onset Alzheimer's disease , 2007, Proceedings of the National Academy of Sciences.
[36] M. Olivier. A haplotype map of the human genome. , 2003, Nature.
[37] R. Tanzi,et al. The genetic epidemiology of neurodegenerative disease. , 2005, The Journal of clinical investigation.
[38] M. McCarthy,et al. Replication of Genome-Wide Association Signals in UK Samples Reveals Risk Loci for Type 2 Diabetes , 2007, Science.
[39] Siobhan M. Dolan,et al. Assessment of cumulative evidence on genetic associations: interim guidelines. , 2008, International journal of epidemiology.
[40] D. Pollen,et al. Cloning of a gene bearing missense mutations in early-onset familial Alzheimer's disease , 1995, Nature.
[41] C. Amos. Successful design and conduct of genome-wide association studies. , 2007, Human molecular genetics.