Biblio
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“Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Ubiquilin 1 polymorphisms are not associated with late-onset Alzheimer's disease.”, Ann Neurol, vol. 59, no. 1, pp. 21-6, 2006.
, “A common haplotype lowers PU.1 expression in myeloid cells and delays onset of Alzheimer's disease.”, Nat Neurosci, vol. 20, no. 8, pp. 1052-1061, 2017.
, “Alzheimer's Disease Risk Polymorphisms Regulate Gene Expression in the ZCWPW1 and the CELF1 Loci.”, PLoS One, vol. 11, no. 2, p. e0148717, 2016.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Genetically predicted body mass index and Alzheimer's disease-related phenotypes in three large samples: Mendelian randomization analyses.”, Alzheimers Dement, vol. 11, no. 12, pp. 1439-1451, 2015.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Head injury and risk of Alzheimer's disease by apolipoprotein E genotype.”, Am J Epidemiol, vol. 146, no. 5, pp. 373-84, 1997.
, “Effects of multiple genetic loci on age at onset in late-onset Alzheimer disease: a genome-wide association study.”, JAMA Neurol, vol. 71, no. 11, pp. 1394-404, 2014.
, “Lack of genetic association of cholesteryl ester transfer protein polymorphisms with late onset Alzheimers disease.”, Neurosci Lett, vol. 381, no. 1-2, pp. 36-41, 2005.
, “Head injury and risk of Alzheimer's disease by apolipoprotein E genotype.”, Am J Epidemiol, vol. 146, no. 5, pp. 373-84, 1997.
, “Variants in the ATP-binding cassette transporter (ABCA7), apolipoprotein E ϵ4,and the risk of late-onset Alzheimer disease in African Americans.”, JAMA, vol. 309, no. 14, pp. 1483-92, 2013.
, “Variants in the ATP-binding cassette transporter (ABCA7), apolipoprotein E ϵ4,and the risk of late-onset Alzheimer disease in African Americans.”, JAMA, vol. 309, no. 14, pp. 1483-92, 2013.
, “A multiancestral genome-wide exome array study of Alzheimer disease, frontotemporal dementia, and progressive supranuclear palsy.”, JAMA Neurol, vol. 72, no. 4, pp. 414-22, 2015.
, “A multiancestral genome-wide exome array study of Alzheimer disease, frontotemporal dementia, and progressive supranuclear palsy.”, JAMA Neurol, vol. 72, no. 4, pp. 414-22, 2015.
, “A multiancestral genome-wide exome array study of Alzheimer disease, frontotemporal dementia, and progressive supranuclear palsy.”, JAMA Neurol, vol. 72, no. 4, pp. 414-22, 2015.
, “Dementia revealed: novel chromosome 6 locus for late-onset Alzheimer disease provides genetic evidence for folate-pathway abnormalities.”, PLoS Genet, vol. 6, no. 9, p. e1001130, 2010.
, “Transcriptomic Changes Due to Cytoplasmic TDP-43 Expression Reveal Dysregulation of Histone Transcripts and Nuclear Chromatin.”, PLoS One, vol. 10, no. 10, p. e0141836, 2015.
, “Genetic variants associated with Alzheimer's disease confer different cerebral cortex cell-type population structure.”, Genome Med, vol. 10, no. 1, p. 43, 2018.
, “Genome-wide association study of CSF levels of 59 alzheimer's disease candidate proteins: significant associations with proteins involved in amyloid processing and inflammation.”, PLoS Genet, vol. 10, no. 10, p. e1004758, 2014.
, “Genome-wide association study of CSF levels of 59 alzheimer's disease candidate proteins: significant associations with proteins involved in amyloid processing and inflammation.”, PLoS Genet, vol. 10, no. 10, p. e1004758, 2014.
, “Genome-wide association study of CSF levels of 59 alzheimer's disease candidate proteins: significant associations with proteins involved in amyloid processing and inflammation.”, PLoS Genet, vol. 10, no. 10, p. e1004758, 2014.
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