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18 results on '"Amy R Dunn"'

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1. The Synaptic Vesicle Glycoprotein 2: Structure, Function, and Disease Relevance

2. Gene-by-environment interactions in Alzheimer’s disease and Parkinson’s disease

3. NMDA receptor blockade ameliorates abnormalities of spike firing of subthalamic nucleus neurons in a parkinsonian nonhuman primate

4. Regulation of intrinsic excitability: Roles for learning and memory, aging and Alzheimer’s disease, and genetic diversity

5. Genetic background modifies CNS‐mediated sensorimotor decline in the AD‐BXD mouse model of genetic diversity in Alzheimer's disease

6. Selective Enhancement of Dopamine Release in the Ventral Pallidum of Methamphetamine-Sensitized Mice

7. Vesicular Monoamine Transporter 2 (VMAT2) Level Regulates MPTP Vulnerability and Clearance of Excess Dopamine in Mouse Striatal Terminals

8. Increased Vesicular Monoamine Transporter 2 (VMAT2; Slc18a2) Protects against Methamphetamine Toxicity

9. Immunochemical analysis of the expression of SV2C in mouse, macaque and human brain

10. Increased vesicular monoamine transporter enhances dopamine release and opposes Parkinson disease-related neurodegeneration in vivo

11. P4-088: GENE-BY-ENVIRONMENT REGULATION OF ALZHEIMER'S DISEASE PATHOGENESIS

12. P2-130: BACKGROUND GENETICS IMPACTS MICROSTRUCTURE MEASURES IN MOTOR CORTEX AND HIPPOCAMPUS OF WILDTYPE AND 5XFAD MICE

13. P2-138: IDENTIFICATION OF SIPA1L1 AS A NOVEL CANDIDATE GENE MEDIATING PRECLINICAL WEIGHT LOSS IN A MOUSE MODEL OF ALZHEIMER'S DISEASE

14. Synaptic vesicle glycoprotein 2C (SV2C) modulates dopamine release and is disrupted in Parkinson disease

15. Deletion of the Chemokine Binding Protein Gene from the Parapoxvirus Orf Virus Reduces Virulence and Pathogenesis in Sheep

16. Synaptic vesicle glycoprotein 2C (SV2C) modulates dopamine release and is disrupted in Parkinson’s disease

17. Immunochemical localization of vesicular monoamine transporter 2 (VMAT2) in mouse brain

18. Cell-Type-Specific Changes in Intrinsic Excitability in the Subiculum following Learning and Exposure to Novel Environmental Contexts

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