Pesticide use and incident Parkinson's disease in a cohort of farmers and their spouses.
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Honglei Chen | A. Blair | D. Umbach | S. Shrestha | D. Sandler | C. Parks | L. B. Beane Freeman | Marie Richards-Barber | J. Hofmann | M. Richards-Barber | Srishti Shrestha
[1] Honglei Chen,et al. Overall and cause-specific mortality in a cohort of farmers and their spouses , 2019, Occupational and Environmental Medicine.
[2] Honglei Chen,et al. High Pesticide Exposure Events and Olfactory Impairment among U.S. Farmers , 2019, Environmental health perspectives.
[3] M. Weisskopf,et al. Head injury at early ages is associated with risk of Parkinson's disease. , 2016, Parkinsonism & related disorders.
[4] C. Tanner,et al. Traumatic brain injury in later life increases risk for Parkinson disease , 2015, Annals of neurology.
[5] B. Ritz,et al. Head injury and risk for Parkinson disease , 2015, Neurology.
[6] Joseph A. C. Delaney,et al. Validation of secondary data sources to identify Parkinson disease against clinical diagnostic criteria. , 2015, American journal of epidemiology.
[7] C. Tanner,et al. Protective glove use and hygiene habits modify the associations of specific pesticides with Parkinson's disease. , 2015, Environment international.
[8] P. Sanberg,et al. Alpha-Synuclein as a Pathological Link Between Chronic Traumatic Brain Injury and Parkinson's Disease , 2015, Journal of cellular physiology.
[9] R. Vermeulen,et al. Occupational exposure to pesticides and endotoxin and Parkinson disease in the Netherlands , 2014, Occupational and Environmental Medicine.
[10] Robert W. Williams,et al. The Perplexing Paradox of Paraquat: The Case for Host‐Based Susceptibility and Postulated Neurodegenerative Effects , 2014, Journal of biochemical and molecular toxicology.
[11] B. Ritz,et al. Aldehyde dehydrogenase variation enhances effect of pesticides associated with Parkinson disease , 2014, Neurology.
[12] B. Ritz,et al. The association between ambient exposure to organophosphates and Parkinson's disease risk , 2014, Occupational and Environmental Medicine.
[13] J. Sinsheimer,et al. Household organophosphorus pesticide use and Parkinson's disease. , 2013, International journal of epidemiology.
[14] E. Cereda,et al. Exposure to pesticides or solvents and risk of Parkinson disease , 2013, Neurology.
[15] T. Dall,et al. The current and projected economic burden of Parkinson's disease in the United States , 2013, Movement disorders : official journal of the Movement Disorder Society.
[16] B. Ritz,et al. Aldehyde dehydrogenase inhibition as a pathogenic mechanism in Parkinson disease , 2012, Proceedings of the National Academy of Sciences.
[17] B. Ritz,et al. Traumatic brain injury, paraquat exposure, and their relationship to Parkinson disease , 2012, Neurology.
[18] C. Tanner,et al. Genetic modification of the association of paraquat and Parkinson's disease , 2012, Movement disorders : official journal of the Movement Disorder Society.
[19] A. Terry,et al. Functional consequences of repeated organophosphate exposure: potential non-cholinergic mechanisms. , 2012, Pharmacology & therapeutics.
[20] J. Lubin,et al. Using multiple imputation to assign pesticide use for non-responders in the follow-up questionnaire in the Agricultural Health Study , 2012, Journal of Exposure Science and Environmental Epidemiology.
[21] J. Lubin,et al. An Updated Algorithm for Estimation of Pesticide Exposure Intensity in the Agricultural Health Study , 2011, International journal of environmental research and public health.
[22] R. Vermeulen,et al. Is Pesticide Use Related to Parkinson Disease? Some Clues to Heterogeneity in Study Results , 2011, Environmental health perspectives.
[23] M. Chesselet,et al. Traumatic brain injury in adult rats causes progressive nigrostriatal dopaminergic cell loss and enhanced vulnerability to the pesticide paraquat. , 2011, Journal of neurotrauma.
[24] J. Deddens,et al. Determinants of captan air and dermal exposures among orchard pesticide applicators in the Agricultural Health Study. , 2011, The Annals of occupational hygiene.
[25] C. Tanner,et al. Rotenone, Paraquat, and Parkinson’s Disease , 2011, Environmental health perspectives.
[26] R. Kandimalla,et al. Nigrostriatal neuronal death following chronic dichlorvos exposure: crosstalk between mitochondrial impairments, α synuclein aggregation, oxidative damage and behavioral changes , 2010, Molecular Brain.
[27] A. Reunanen,et al. Persistent organochlorine pesticides in serum and risk of Parkinson disease , 2010, Neurology.
[28] M. Dosemeci,et al. Urinary biomarker, dermal, and air measurement results for 2,4-D and chlorpyrifos farm applicators in the Agricultural Health Study , 2010, Journal of Exposure Science and Environmental Epidemiology.
[29] H. Checkoway,et al. Occupational factors and risk of Parkinson's disease: A population-based case-control study. , 2009, American journal of industrial medicine.
[30] Connie Marras,et al. Occupation and risk of parkinsonism: a multicenter case-control study. , 2009, Archives of neurology.
[31] B. Ritz,et al. Well-Water Consumption and Parkinson’s Disease in Rural California , 2009, Environmental health perspectives.
[32] M. Farrer,et al. Dopamine Transporter Genetic Variants and Pesticides in Parkinson’s Disease , 2009, Environmental health perspectives.
[33] J. Levin,et al. Pesticide/Environmental Exposures and Parkinson's Disease in East Texas , 2008, Journal of agromedicine.
[34] D. Thurman,et al. How common are the “common” neurologic disorders? , 2007, Neurology.
[35] A. Blair,et al. Pesticide exposure and self-reported Parkinson's disease in the agricultural health study. , 2006, American journal of epidemiology.
[36] Vellareddy Anantharam,et al. Dieldrin-induced neurotoxicity: relevance to Parkinson's disease pathogenesis. , 2005, Neurotoxicology.
[37] D. Hovda,et al. Mitochondrial damage and dysfunction in traumatic brain injury. , 2004, Mitochondrion.
[38] Kiowa S. Bower,et al. Synergistic effects of pesticides and metals on the fibrillation of alpha-synuclein: implications for Parkinson's disease. , 2002, Neurotoxicology.
[39] M. Dosemeci,et al. Accuracy of self-reported pesticide use duration information from licensed pesticide applicators in the Agricultural Health Study , 2002, Journal of Exposure Analysis and Environmental Epidemiology.
[40] Miguel A Hernán,et al. A meta‐analysis of coffee drinking, cigarette smoking, and the risk of Parkinson's disease , 2002, Annals of neurology.
[41] M. Dosemeci,et al. Reliability of Reporting on Life-Style and Agricultural Factors by a Sample of Participants in the Agricultural Health Study from Iowa , 2002, Epidemiology.
[42] N. Rothman,et al. The Agricultural Health Study. , 1996, Environmental health perspectives.
[43] S. R. Daniel,et al. Phenoxyalkanoic acid herbicides in municipal landfill leachates , 1992 .
[44] S. Goldman,et al. Pesticides and Parkinson's Disease: Current Experimental and Epidemiological Evidence , 2017 .
[45] S. Cole,et al. Selection Bias Due to Loss to Follow Up in Cohort Studies. , 2016, Epidemiology.
[46] B. Stoica,et al. Progressive neurodegeneration after experimental brain trauma: association with chronic microglial activation. , 2014, Journal of neuropathology and experimental neurology.
[47] C. Tanner,et al. Dietary fat intake, pesticide use, and Parkinson's disease. , 2014, Parkinsonism & related disorders.
[48] J. A. Vale,et al. Poisoning Due to Chlorophenoxy Herbicides , 2004, Toxicological reviews.
[49] S. Gilman,et al. Diagnostic criteria for Parkinson disease. , 1999, Archives of neurology.
[50] D. Lilienfeld,et al. 2,4-D, 2,4,5-T, and 2,3,7,8-TCDD: an overview. , 1989, Epidemiologic reviews.
[51] G. Ware. Silvex (2,4,5-TP). , 1988, Reviews of environmental contamination and toxicology.