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Brain Research. Molecular Brain Research|May 17, 2003
Selective decrease in NR1 subunit splice variant mRNA in the hippocampus of Pb2+-exposed rats: implications for synaptic targeting and cell surface expression of NMDAR complexesTomás R Guilarte, Jennifer L McGlothanExperimental Neurology|March 21, 2006
Experience-dependent regulation of zif268 gene expression and spatial learningChristopher D Toscano, Jennifer L McGlothan, Tomás R GuilarteNeurotoxicology|July 30, 2008
Developmental lead exposure impairs extinction of conditioned fear in young adult ratsJennifer L McGlothan, Marzena Karcz-Kubicha, Tomás R GuilarteBrain Research. Developmental Brain Research|November 8, 2003
Lead exposure alters cyclic-AMP response element binding protein phosphorylation and binding activity in the developing rat brainChristopher D Toscano, Jennifer L McGlothan, Tomás R GuilarteNeurotoxicology|November 28, 2020
Chronic developmental lead exposure increases μ-opiate receptor levels in the adolescent rat brainDamaris Albores-Garcia, Jennifer L McGlothan, Zoran Bursac, et al.Neurotoxicology|September 24, 2022
Pathophysiological studies of aging Slc39a14 knockout mice to assess the progression of manganese-induced dystonia-parkinsonismAlexander N Rodichkin, Melissa K Edler, Jennifer L McGlothan, et al.Biorxiv : the Preprint Server for Biology|June 12, 2025
Chronic Pb 2+ Exposure Causes Hippocampal Network Hypersynchrony, Absence Seizures, and Sensorimotor DeficitsNathan W Schultheiss, Jennifer L McGlothan, Tomás R Guilarte, et al.Neurobiology of Disease|August 6, 2021
Behavioral and neurochemical studies of inherited manganese-induced dystonia-parkinsonism in Slc39a14-knockout miceAlexander N Rodichkin, Melissa K Edler, Jennifer L McGlothan, et al.Brain Research. Developmental Brain Research|December 14, 2002
Developmental Pb2+ exposure alters NMDAR subtypes and reduces CREB phosphorylation in the rat brainChristopher D Toscano, Hossein Hashemzadeh-Gargari, Jennifer L McGlothan, et al.Annals of Neurology|January 2, 2003
Environmental enrichment reverses cognitive and molecular deficits induced by developmental lead exposureTomás R Guilarte, Christopher D Toscano, Jennifer L McGlothan, et al.Pageof 3