Joseph Kochmanski

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2018- Michigan State University, East Lansing, MI 
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"Joseph Kochmanski"
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Patterson JR, Kochmanski J, Stoll AC, et al. (2024) Transcriptomic profiling of early synucleinopathy in rats induced with preformed fibrils. Npj Parkinson's Disease. 10: 7
Kochmanski J, Kuhn NC, Bernstein AI. (2022) Parkinson's disease-associated, sex-specific changes in DNA methylation at PARK7 (DJ-1), SLC17A6 (VGLUT2), PTPRN2 (IA-2β), and NR4A2 (NURR1) in cortical neurons. Npj Parkinson's Disease. 8: 120
Miller KM, Patterson JR, Kochmanski J, et al. (2021) Striatal afferent BDNF is disrupted by synucleinopathy and partially restored by STN DBS. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Montrose L, Goodrich JM, Morishita M, et al. (2020) Neonatal Lead (Pb) Exposure and DNA Methylation Profiles in Dried Bloodspots. International Journal of Environmental Research and Public Health. 17
Gezer AO, Kochmanski J, VanOeveren SE, et al. (2020) Developmental exposure to the organochlorine pesticide dieldrin causes male-specific exacerbation of α-synuclein-preformed fibril-induced toxicity and motor deficits. Neurobiology of Disease. 104947
Kochmanski J, Bernstein AI. (2020) The Impact of Environmental Factors on 5-Hydroxymethylcytosine in the Brain. Current Environmental Health Reports
Malloy MA, Kochmanski JJ, Jones TR, et al. (2019) Perinatal Bisphenol A Exposure and Reprogramming of Imprinted Gene Expression in the Adult Mouse Brain. Frontiers in Genetics. 10: 951
Kochmanski J, Savonen C, Bernstein AI. (2019) A Novel Application of Mixed Effects Models for Reconciling Base-Pair Resolution 5-Methylcytosine and 5-Hydroxymethylcytosine Data in Neuroepigenetics. Frontiers in Genetics. 10: 801
Kochmanski J, VanOeveren SE, Patterson JR, et al. (2019) Developmental Dieldrin Exposure Alters DNA Methylation at Genes Related to Dopaminergic Neuron Development and Parkinson's Disease in Mouse Midbrain. Toxicological Sciences : An Official Journal of the Society of Toxicology
Kochmanski J, Goodrich JM, Peterson KE, et al. (2018) Neonatal bloodspot DNA methylation patterns are associated with childhood weight status in the Healthy Families Project. Pediatric Research
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