Mark P. Fitzgerald, Ph.D.
Affiliations: | University of Virginia, Charlottesville, VA |
Area:
Stroke and EpilepsyGoogle:
"Mark Fitzgerald"Mean distance: 42746.4 (cluster 23)
Parents
Sign in to add mentorKevin S. Lee | grad student | 2010 | UVA | |
(Disturbances in progenitor cell placement, proliferation, and apoptosis modify neocortical development in the tish neurological mutant.) |
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Publications
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Fitzgerald MP, Massey SL, Fung FW, et al. (2020) Expanding Access to Continuous EEG Monitoring in Neonatal Intensive Care Units. Journal of Clinical Neurophysiology : Official Publication of the American Electroencephalographic Society |
Grosenbaugh DK, Joshi S, Fitzgerald MP, et al. (2020) A deletion in Eml1 leads to bilateral subcortical heterotopia in the tish rat. Neurobiology of Disease. 104836 |
Massey SL, Shou H, Clancy R, et al. (2018) Interrater and Intrarater Agreement in Neonatal Electroencephalogram Background Scoring. Journal of Clinical Neurophysiology : Official Publication of the American Electroencephalographic Society |
Fitzgerald MP, Massey SL, Fung FW, et al. (2018) High electroencephalographic seizure exposure is associated with unfavorable outcomes in neonates with hypoxic-ischemic encephalopathy. Seizure. 61: 221-226 |
Fitzgerald MP, Kessler SK, Abend NS. (2017) Early discontinuation of antiseizure medications in neonates with hypoxic-ischemic encephalopathy. Epilepsia |
Li Y, Bor YC, Fitzgerald MP, et al. (2016) An NXF1 mRNA with a retained intron is expressed in hippocampal and neocortical neurons and is translated into a protein that functions as an Nxf1 co-factor. Molecular Biology of the Cell |
Wang Y, Yoshimura R, Manabe H, et al. (2014) Trans-sodium crocetinate improves outcomes in rodent models of occlusive and hemorrhagic stroke. Brain Research. 1583: 245-54 |
Fitzgerald MP, Covio M, Lee KS. (2011) Disturbances in the positioning, proliferation and apoptosis of neural progenitors contribute to subcortical band heterotopia formation. Neuroscience. 176: 455-71 |
Manabe H, Wang Y, Yoshimura R, et al. (2011) Metabolic reflow as a therapy for ischemic brain injury. Acta Neurochirurgica. Supplement. 110: 87-91 |