Biblio
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“Diet and Inflammation in Alzheimer's Disease and Related Chronic Diseases: A Review.”, J Alzheimers Dis, vol. 50, no. 2, pp. 301-34, 2016.
, “Diet and Inflammation in Alzheimer's Disease and Related Chronic Diseases: A Review.”, J Alzheimers Dis, vol. 50, no. 2, pp. 301-34, 2016.
, “Dietary high cholesterol and trace metals in the drinking water increase levels of ABCA1 in the rabbit hippocampus and temporal cortex.”, J Alzheimers Dis, vol. 49, no. 1, pp. 201-9, 2016.
, “Dietary high cholesterol and trace metals in the drinking water increase levels of ABCA1 in the rabbit hippocampus and temporal cortex.”, J Alzheimers Dis, vol. 49, no. 1, pp. 201-9, 2016.
, “Diet's Role in Modifying Risk of Alzheimer's Disease: History and Present Understanding.”, J Alzheimers Dis, vol. 96, no. 4, pp. 1353-1382, 2023.
, “Different Expression Patterns of Amyloid-β Protein Precursor Secretases in Human and Mouse Hippocampal Neurons: A Potential Contribution to Species Differences in Neuronal Susceptibility to Amyloid-β Pathogenesis.”, J Alzheimers Dis, vol. 51, no. 1, pp. 179-95, 2016.
, “Different Inflammatory Signatures in Alzheimer's Disease and Frontotemporal Dementia Cerebrospinal Fluid.”, J Alzheimers Dis, vol. 81, no. 2, pp. 629-640, 2021.
, “Different Inflammatory Signatures in Alzheimer's Disease and Frontotemporal Dementia Cerebrospinal Fluid.”, J Alzheimers Dis, vol. 81, no. 2, pp. 629-640, 2021.
, “Differential Diagnosis of Dementia with High Levels of Cerebrospinal Fluid Tau Protein.”, J Alzheimers Dis, vol. 51, no. 3, pp. 905-13, 2016.
, “Differential Impairment of Cognitive and Affective Mentalizing Abilities in Neurodegenerative Dementias: Evidence from Behavioral Variant of Frontotemporal Dementia, Alzheimer's Disease, and Mild Cognitive Impairment.”, J Alzheimers Dis, vol. 50, no. 4, pp. 1011-22, 2016.
, “Differential Impairment of Cognitive and Affective Mentalizing Abilities in Neurodegenerative Dementias: Evidence from Behavioral Variant of Frontotemporal Dementia, Alzheimer's Disease, and Mild Cognitive Impairment.”, J Alzheimers Dis, vol. 50, no. 4, pp. 1011-22, 2016.
, “Differential Mass Spectrometry Profiles of Tau Protein in the Cerebrospinal Fluid of Patients with Alzheimer's Disease, Progressive Supranuclear Palsy, and Dementia with Lewy Bodies.”, J Alzheimers Dis, vol. 51, no. 4, pp. 1033-43, 2016.
, “Differential Membrane Toxicity of Amyloid-β Fragments by Pore Forming Mechanisms.”, J Alzheimers Dis, vol. 51, no. 3, pp. 689-99, 2016.
, “Differential Membrane Toxicity of Amyloid-β Fragments by Pore Forming Mechanisms.”, J Alzheimers Dis, vol. 51, no. 3, pp. 689-99, 2016.
, “Differential Membrane Toxicity of Amyloid-β Fragments by Pore Forming Mechanisms.”, J Alzheimers Dis, vol. 51, no. 3, pp. 689-99, 2016.
, “Differential Regulation of N-Methyl-D-Aspartate Receptor Subunits is an Early Event in the Actions of Soluble Amyloid-β(1-40) Oligomers on Hippocampal Neurons.”, J Alzheimers Dis, vol. 51, no. 1, pp. 197-212, 2016.
, “Dilated Perivascular Spaces in the Centrum Semiovale Begin to Develop in Middle Age.”, J Alzheimers Dis, vol. 61, no. 4, pp. 1619-1626, 2018.
, “Dilated Perivascular Spaces in the Centrum Semiovale Begin to Develop in Middle Age.”, J Alzheimers Dis, vol. 61, no. 4, pp. 1619-1626, 2018.
, “Dilated Perivascular Spaces in the Centrum Semiovale Begin to Develop in Middle Age.”, J Alzheimers Dis, vol. 61, no. 4, pp. 1619-1626, 2018.
, “Dimethyl Fumarate is a Potential Therapeutic Option for Alzheimer's Disease.”, J Alzheimers Dis, vol. 85, no. 1, pp. 443-456, 2022.
, “Diminished CRE-Induced Plasticity is Linked to Memory Deficits in Familial Alzheimer's Disease Mice.”, J Alzheimers Dis, vol. 50, no. 2, pp. 477-89, 2016.
, “Direct Evidence of Internalization of Tau by Microglia In Vitro and In Vivo.”, J Alzheimers Dis, vol. 50, no. 1, pp. 77-87, 2016.
, “Direct Evidence of Internalization of Tau by Microglia In Vitro and In Vivo.”, J Alzheimers Dis, vol. 50, no. 1, pp. 77-87, 2016.
, “Direct Evidence of Internalization of Tau by Microglia In Vitro and In Vivo.”, J Alzheimers Dis, vol. 50, no. 1, pp. 77-87, 2016.
, “Directed conversion of Alzheimer's disease patient skin fibroblasts into functional neurons.”, Cell, vol. 146, no. 3, pp. 359-71, 2011.
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