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Alzheimer's and Dementia Journal
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publication venue for
A Mathematical Model of Alzheimer's Disease Simulates Different Gene Therapy Treatments and Their Effects on Mitochondrial Activity
2018
The MtDNA T9861C Mutation Exacerbates Reductions in Oxidative Phosphorylation Pathways in Alzheimer's Disease Brains
2018
A Testable Mathematical Model For Alzheimer's Disease Using Biochemical Systems Theory (BST) Predicts That Mitochondrial Dysfunction Is Linked To Changes In Expression Of Five Genes Impacting Mitochondrial Ros And Apoptosis
2017
Brains of Alzheimer's Patients Show Expression Changes in Five Genes Affecting Mitochondrial Morphology, Membrane Potential, and Neuronal Apoptosis that Directly or Indirectly Interact with APP
2017
Brains of Alzheimer's Patients Show Expression Changes in Four Genes Affecting Gamma- Secretase and Processing of the Amyloid Precursor Protein
2016
Building a testable mathematical model for Alzheimer's Disease using gene expression changes and biochemical systems theory (BST)
2016
Altered expression of mitochondrial energy genes in the brains of Alzheimer's patients can affect secretase gamma regulation and processing of the amyloid precursor protein
2015
The mtDNA T9861C mutation occurs in high frequency but with unequal distribution in the Alzheimer's Disease brain
2008