Biblio
Export 1220 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is W [Clear All Filters]
“Alzheimer's Disease Neuroimaging Initiative (ADNI): clinical characterization.”, Neurology, vol. 74, no. 3, pp. 201-9, 2010.
, “Gamma-secretase activating protein is a therapeutic target for Alzheimer's disease.”, Nature, vol. 467, no. 7311, pp. 95-8, 2010.
, “Genetic evidence implicates the immune system and cholesterol metabolism in the aetiology of Alzheimer's disease.”, PLoS One, vol. 5, no. 11, p. e13950, 2010.
, “Genetic evidence implicates the immune system and cholesterol metabolism in the aetiology of Alzheimer's disease.”, PLoS One, vol. 5, no. 11, p. e13950, 2010.
, “Genetic evidence implicates the immune system and cholesterol metabolism in the aetiology of Alzheimer's disease.”, PLoS One, vol. 5, no. 11, p. e13950, 2010.
, “Astrocyte-neuron lactate transport is required for long-term memory formation.”, Cell, vol. 144, no. 5, pp. 810-23, 2011.
, “The diagnosis of dementia due to Alzheimer's disease: recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease.”, Alzheimers Dement, vol. 7, no. 3, pp. 263-9, 2011.
, “Evidence for ordering of Alzheimer disease biomarkers.”, Arch Neurol, vol. 68, no. 12, pp. 1526-35, 2011.
, “Evidence for ordering of Alzheimer disease biomarkers.”, Arch Neurol, vol. 68, no. 12, pp. 1526-35, 2011.
, “Evidence for ordering of Alzheimer disease biomarkers.”, Arch Neurol, vol. 68, no. 12, pp. 1526-35, 2011.
, “Exercise training increases size of hippocampus and improves memory.”, Proc Natl Acad Sci U S A, vol. 108, no. 7, pp. 3017-22, 2011.
, “Exercise training increases size of hippocampus and improves memory.”, Proc Natl Acad Sci U S A, vol. 108, no. 7, pp. 3017-22, 2011.
, “Exercise training increases size of hippocampus and improves memory.”, Proc Natl Acad Sci U S A, vol. 108, no. 7, pp. 3017-22, 2011.
, “Neuronal basis of age-related working memory decline.”, Nature, vol. 476, no. 7359, pp. 210-3, 2011.
, “Neuronal basis of age-related working memory decline.”, Nature, vol. 476, no. 7359, pp. 210-3, 2011.
, “Pathogenic protein seeding in Alzheimer disease and other neurodegenerative disorders.”, Ann Neurol, vol. 70, no. 4, pp. 532-40, 2011.
, “Soluble amyloid beta-protein dimers isolated from Alzheimer cortex directly induce Tau hyperphosphorylation and neuritic degeneration.”, Proc Natl Acad Sci U S A, vol. 108, no. 14, pp. 5819-24, 2011.
, “Toward defining the preclinical stages of Alzheimer's disease: recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease.”, Alzheimers Dement, vol. 7, no. 3, pp. 280-92, 2011.
, “Vascular risk factors promote conversion from mild cognitive impairment to Alzheimer disease.”, Neurology, vol. 76, no. 17, pp. 1485-91, 2011.
, “Cerebrospinal fluid levels of β-amyloid 1-42, but not of tau, are fully changed already 5 to 10 years before the onset of Alzheimer dementia.”, Arch Gen Psychiatry, vol. 69, no. 1, pp. 98-106, 2012.
, “Demonstrated brain insulin resistance in Alzheimer's disease patients is associated with IGF-1 resistance, IRS-1 dysregulation, and cognitive decline.”, J Clin Invest, vol. 122, no. 4, pp. 1316-38, 2012.
, “Demonstrated brain insulin resistance in Alzheimer's disease patients is associated with IGF-1 resistance, IRS-1 dysregulation, and cognitive decline.”, J Clin Invest, vol. 122, no. 4, pp. 1316-38, 2012.
, “Demonstrated brain insulin resistance in Alzheimer's disease patients is associated with IGF-1 resistance, IRS-1 dysregulation, and cognitive decline.”, J Clin Invest, vol. 122, no. 4, pp. 1316-38, 2012.
, “An epigenetic blockade of cognitive functions in the neurodegenerating brain.”, Nature, vol. 483, no. 7388, pp. 222-6, 2012.
, “A mutation in APP protects against Alzheimer's disease and age-related cognitive decline.”, Nature, vol. 488, no. 7409, pp. 96-9, 2012.
,