Sarah Neuner

Affiliations: 
2013- Anatomy and Neurobiology University of Tennessee Health Science Center, Memphis, TN, United States 
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"Sarah Neuner"
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Dunn AR, Hadad N, Neuner SM, et al. (2020) Identifying Mechanisms of Normal Cognitive Aging Using a Novel Mouse Genetic Reference Panel. Frontiers in Cell and Developmental Biology. 8: 562662
Ouellette AR, Neuner SM, Dumitrescu L, et al. (2020) Cross-Species Analyses Identify Dlgap2 as a Regulator of Age-Related Cognitive Decline and Alzheimer's Dementia. Cell Reports. 32: 108091
Heuer SE, Neuner SM, Hadad N, et al. (2020) Identifying the molecular systems that influence cognitive resilience to Alzheimer's disease in genetically diverse mice. Learning & Memory (Cold Spring Harbor, N.Y.). 27: 355-371
Wan YW, Al-Ouran R, Mangleburg CG, et al. (2020) Meta-Analysis of the Alzheimer's Disease Human Brain Transcriptome and Functional Dissection in Mouse Models. Cell Reports. 32: 107908
Neuner SM, Tcw J, Goate AM. (2020) Genetic architecture of Alzheimer's disease. Neurobiology of Disease. 104976
O'Connell KMS, Ouellette AR, Neuner SM, et al. (2019) Genetic background modifies CNS-mediated sensorimotor decline in the AD-BXD mouse model of genetic diversity in Alzheimer's disease. Genes, Brain, and Behavior. e12603
Mulligan MK, Abreo T, Neuner SM, et al. (2019) Identification of a Functional Non-coding Variant in the GABA Receptor α2 Subunit of the C57BL/6J Mouse Reference Genome: Major Implications for Neuroscience Research. Frontiers in Genetics. 10: 188
Neuner SM, Heuer SE, Zhang JG, et al. (2019) Identification of Pre-symptomatic Gene Signatures That Predict Resilience to Cognitive Decline in the Genetically Diverse AD-BXD Model. Frontiers in Genetics. 10: 35
Dunn AR, Neuner SM, Ding S, et al. (2018) Cell-Type-Specific Changes in Intrinsic Excitability in the Subiculum following Learning and Exposure to Novel Environmental Contexts. Eneuro. 5
Neuner SM, Heuer SE, Huentelman MJ, et al. (2018) Harnessing Genetic Complexity to Enhance Translatability of Alzheimer's Disease Mouse Models: A Path toward Precision Medicine. Neuron
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