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Acta Neuropathologica|December 17, 2015
Astrocytes: a central element in neurological diseasesMilos Pekny, Marcela Pekna, Albee Messing, et al.Annals of Neurology|February 26, 2005
Unusual variants of Alexander's diseaseMarjo S van der Knaap, Gajja S Salomons, Rong Li, et al.Journal of Cell Science|September 22, 2006
Loss of glial fibrillary acidic protein (GFAP) impairs Schwann cell proliferation and delays nerve regeneration after damageDaniela Triolo, Giorgia Dina, Isabella Lorenzetti, et al.Cells|August 28, 2024
The Role of Astrocytes in CNS Disorders: Historic and Contemporary ViewsMichael Brenner, Vladimir ParpuraElife|May 21, 2014
Systems analysis of the CO2 concentrating mechanism in cyanobacteriaNiall Mangan, Michael BrennerAmerican Journal of Cardiovascular Drugs : Drugs, Devices, and Other Interventions|May 10, 2015
Risks and benefits of low molecular-weight heparin and target-specific oral anticoagulant use for thromboprophylaxis in medically ill patientsGenevieve Hale, Michael BrennerTracheostomy (Warrenville, Ill.)|January 1, 2026
Tracheostomy in the Digital Age: How Artificial Intelligence and Immersive Technologies Are Redefining Airway CareVinciya Pandian, Michael BrennerMagnetic Resonance in Medicine|November 10, 2023
Quantitative diffusion imaging and genotype-by-sex interactions in a rat model of Alexander diseaseNicholas A Stowe, Ajay P Singh, Brian R Barnett, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 3, 2012
Beneficial effects of Nrf2 overexpression in a mouse model of Alexander diseaseChristine M LaPash Daniels, Elizabeth V Austin, Danica E Rockney, et al.Eneuro|March 10, 2025
GFAP mutation and astrocyte dysfunction lead to a neurodegenerative profile with impaired synaptic plasticity and cognitive deficits in a rat model of Alexander diseaseRobert F Berman, Matthew R Matson, Angelica M Bachman, et al.Pageof 17