A perspective on persistent toxicants in veterans and amyotrophic lateral sclerosis: identifying exposures determining higher ALS risk

[1]  Trinh Tuan Anh,et al.  Controlled synthesis of various Fe2O3 morphologies as energy storage materials , 2021, Scientific Reports.

[2]  E. Seto,et al.  Distinct Ultrafine Particle Profiles Associated with Aircraft and Roadway Traffic. , 2021, Environmental science & technology.

[3]  D. Provenzale,et al.  Development of a Multi-Study Repository to Support Research on Veteran Health: The VA Cooperative Studies Program Epidemiology Center-Durham (CSPEC-Durham) Data and Specimen Repository , 2021, Frontiers in Public Health.

[4]  U. Vogel,et al.  A review of health effects associated with exposure to jet engine emissions in and around airports , 2021, Environmental Health.

[5]  R. Martin,et al.  Fine Particle Exposure and Clinical Aggravation in Neurodegenerative Diseases in New York State , 2021, Environmental health perspectives.

[6]  M. Vinceti,et al.  Risk of Amyotrophic Lateral Sclerosis and Exposure to Particulate Matter from Vehicular Traffic: A Case-Control Study , 2021, International journal of environmental research and public health.

[7]  A. Djordjevic,et al.  Elucidating the influence of environmentally relevant toxic metal mixture on molecular mechanisms involved in the development of neurodegenerative diseases: in silico toxicogenomic data-mining. , 2021, Environmental research.

[8]  A. Nizami,et al.  A comparison of waste recycling facilities for their contribution of heavy metals and trace elements in ambient air , 2021, Environmental Science and Pollution Research.

[9]  H. Uno,et al.  Acrolein and other toxicant exposures in relation to cardiovascular disease among marijuana and tobacco smokers in a longitudinal cohort of HIV-positive and negative adults , 2021, EClinicalMedicine.

[10]  B. Bocca,et al.  An overview on amyotrophic lateral sclerosis and cadmium , 2020, Neurological Sciences.

[11]  H. Veit,et al.  Precious and critical metals from wasted LED lamps: characterization and evaluation , 2020, Environmental technology.

[12]  A. Gräslund,et al.  Amyotrophic Lateral Sclerosis After Exposure to Manganese from Traditional Medicine Procedures in Kenya , 2020, Biological Trace Element Research.

[13]  S. Yamada,et al.  A novel hypothesis on metal dyshomeostasis and mitochondrial dysfunction in amyotrophic lateral sclerosis: Potential pathogenetic mechanism and therapeutic implications. , 2020, European journal of pharmacology.

[14]  M. Weisskopf,et al.  Study of Occupational Chromium, Iron, and Nickel Exposure and Amyotrophic Lateral Sclerosis in Denmark , 2020, International journal of environmental research and public health.

[15]  M. Vinceti,et al.  Metal(loid)s role in the pathogenesis of amyotrophic lateral sclerosis: Environmental, epidemiological, and genetic data. , 2020, Environmental research.

[16]  A. Andrew,et al.  Risk factors for amyotrophic lateral sclerosis: A regional United States case‐control study , 2020, Muscle & nerve.

[17]  Norihiro Nishimura,et al.  Toxicological interactions of microplastics/nanoplastics and environmental contaminants: Current knowledge and future perspectives. , 2020, Journal of hazardous materials.

[18]  F. Fang,et al.  Military service and related risk factors for amyotrophic lateral sclerosis , 2020, Acta neurologica Scandinavica.

[19]  R. Kulesza,et al.  Gait and balance disturbances are common in young urbanites and associated with cognitive impairment. Air pollution and the historical development of Alzheimer's disease in the young , 2020, Environmental Research.

[20]  R. Kulesza,et al.  Quadruple abnormal protein aggregates in brainstem pathology and exogenous metal-rich magnetic nanoparticles. The substantia nigrae is a very early target in young urbanites and the gastrointestinal tract likely a key brainstem portal. , 2020, Environmental research.

[21]  M. M. Mata-Miranda,et al.  Astrocytes Are More Vulnerable than Neurons to Silicon Dioxide Nanoparticle Toxicity in Vitro , 2020, Toxics.

[22]  J. Griffith Electron microscopic characterization of exhaust particles containing lead dibromide beads expelled from aircraft burning leaded gasoline. , 2020, Atmospheric pollution research.

[23]  Marc Schneider,et al.  Key for crossing the BBB with nanoparticles: the rational design , 2020, Beilstein journal of nanotechnology.

[24]  Junchao Duan,et al.  Low-Dose Exposure of Silica Nanoparticles Induces Neurotoxicity via Neuroactive Ligand–Receptor Interaction Signaling Pathway in Zebrafish Embryos , 2020, International journal of nanomedicine.

[25]  Ghalib A. Bello,et al.  Early life metal dysregulation in amyotrophic lateral sclerosis , 2020, Annals of clinical and translational neurology.

[26]  Luis Carrasco,et al.  Polygenic risk and pleiotropy in neurodegenerative diseases , 2020, Neurobiology of Disease.

[27]  C. Weinberg,et al.  Keratinous biomarker of mercury exposure associated with amyotrophic lateral sclerosis risk in a nationwide U.S. study , 2020, Amyotrophic lateral sclerosis & frontotemporal degeneration.

[28]  A. Gore,et al.  Sex-specific effects of developmental exposure to polychlorinated biphenyls on neuroimmune and dopaminergic endpoints in adolescent rats. , 2020, Neurotoxicology and teratology.

[29]  V. Weedn Origins of the Armed Forces Medical Examiner System , 2020, Academic forensic pathology.

[30]  M. Park,et al.  Effects of nanoparticles on neuroinflammation in a mouse model of asthma , 2020, Respiratory Physiology & Neurobiology.

[31]  R. Kulesza,et al.  Alzheimer disease starts in childhood in polluted Metropolitan Mexico City. A major health crisis in progress. , 2020, Environmental research.

[32]  J. Lojk,et al.  Toxicity mechanisms of selected engineered nanoparticles on human neural cells in vitro. , 2020, Toxicology.

[33]  S. Wilton,et al.  ALS Genetics, Mechanisms, and Therapeutics: Where Are We Now? , 2019, Front. Neurosci..

[34]  S. Das,et al.  Chronic waterborne exposure to benzo[a]pyrene induces locomotor dysfunction and development of neurodegenerative phenotypes in zebrafish , 2019, Neuroscience Letters.

[35]  V. Arrandale,et al.  Electronic Waste Recycling: Occupational Exposures and Work-Related Health Effects , 2019, Current Environmental Health Reports.

[36]  M. Pugh,et al.  Amyotrophic Lateral Sclerosis Among Veterans Deployed in Support of Post-9/11 U.S. Conflicts. , 2019, Military medicine.

[37]  L. Calderón-Garcidueñas,et al.  Combustion and friction-derived nanoparticles and industrial-sourced nanoparticles: The culprit of Alzheimer and Parkinson's diseases. , 2019, Environmental research.

[38]  M. Vojtíšek-Lom,et al.  Content of metals in emissions from gasoline, diesel, and alternative mixed biofuels , 2019, Environmental Science and Pollution Research.

[39]  J. Ohm,et al.  Establishing a role for environmental toxicant exposure induced epigenetic remodeling in malignant transformation. , 2019, Seminars in cancer biology.

[40]  P. Ariya,et al.  The Existence of Airborne Mercury Nanoparticles , 2019, Scientific Reports.

[41]  M. Hernández-Córdoba,et al.  Bioaccumulation of polycyclic aromatic hydrocarbons for forensic assessment using gas chromatography-mass spectrometry. , 2019, Chemical research in toxicology.

[42]  A. Fučíková,et al.  α-Synuclein aggregation at low concentrations. , 2019, Biochimica et biophysica acta. Proteins and proteomics.

[43]  J. Long,et al.  The Role of TDP-43 in Military-Relevant TBI and Chronic Neurodegeneration , 2019, Front. Neurol..

[44]  A. T. Saber,et al.  Airport emission particles: exposure characterization and toxicity following intratracheal instillation in mice , 2019, Particle and Fibre Toxicology.

[45]  T. Trindade,et al.  Recovery of Rare Earth Elements by Carbon-Based Nanomaterials—A Review , 2019, Nanomaterials.

[46]  Tsun-Jen Cheng,et al.  Particle toxicology and health - where are we? , 2019, Particle and Fibre Toxicology.

[47]  G. L. Masson,et al.  Genetics of amyotrophic lateral sclerosis: A review , 2019, Journal of the Neurological Sciences.

[48]  M. Kitazawa,et al.  Metal Toxicity Links to Alzheimer's Disease and Neuroinflammation. , 2019, Journal of molecular biology.

[49]  V. Shur,et al.  Toxic Effects of Low-Level Long-Term Inhalation Exposures of Rats to Nickel Oxide Nanoparticles , 2019, International journal of molecular sciences.

[50]  H. Burtscher,et al.  Non-volatile particle emissions from aircraft turbine engines at ground-idle induce oxidative stress in bronchial cells , 2019, Communications Biology.

[51]  P. Krukow,et al.  Analysis of Trace Elements in Human Brain: Its Aim, Methods, and Concentration Levels , 2019, Front. Chem..

[52]  Stephen A. Goutman,et al.  High plasma concentrations of organic pollutants negatively impact survival in amyotrophic lateral sclerosis , 2019, Journal of Neurology, Neurosurgery, and Psychiatry.

[53]  M. Kruszewski,et al.  Toxicity of metallic nanoparticles in the central nervous system , 2019, Nanotechnology Reviews.

[54]  A. Jafari,et al.  Exposure to nanoscale diesel exhaust particles: Oxidative stress, neuroinflammation, anxiety and depression on adult male mice. , 2019, Ecotoxicology and environmental safety.

[55]  A. Chiò,et al.  Gene-Environment-Time Interactions in Neurodegenerative Diseases: Hypotheses and Research Approaches , 2018, Annals of Neurosciences.

[56]  M. Sezen,et al.  Examination of metal mobilization from a gunshot by scanning acoustic microscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy, and inductively coupled plasma optical emission spectroscopy: a case report , 2018, Journal of Medical Case Reports.

[57]  W. J. Walsh,et al.  Aluminum in neurological disease – a 36 year multicenter study , 2018, Journal of Alzheimer's disease & Parkinsonism.

[58]  A. Volceanov,et al.  Impact of Nanoparticles on Brain Health: An Up to Date Overview , 2018, Journal of clinical medicine.

[59]  Y. El-Sayed,et al.  Potential role of &agr;‐lipoic acid and Ginkgo biloba against silver nanoparticles‐induced neuronal apoptosis and blood‐brain barrier impairments in rats , 2018, Life sciences.

[60]  M. C. Newland,et al.  Heavy Metal Neurotoxicants Induce ALS-Linked TDP-43 Pathology , 2018, Toxicological sciences : an official journal of the Society of Toxicology.

[61]  L. Bodin,et al.  Amyotrophic Lateral Sclerosis and Occupational Exposures: A Systematic Literature Review and Meta-Analyses , 2018, International journal of environmental research and public health.

[62]  Xinying Wang,et al.  Neuroinflammation is induced by tongue-instilled ZnO nanoparticles via the Ca2+-dependent NF-κB and MAPK pathways , 2018, Particle and Fibre Toxicology.

[63]  J. Herance,et al.  Nanoparticles in Medicine: A Focus on Vascular Oxidative Stress , 2018, Oxidative medicine and cellular longevity.

[64]  E. Mariman,et al.  Differential protein expression of hippocampal cells associated with heavy metals (Pb, As, and MeHg) neurotoxicity: Deepening into the molecular mechanism of neurodegenerative diseases. , 2018, Journal of proteomics.

[65]  A. Gore,et al.  Sex differences in effects of gestational polychlorinated biphenyl exposure on hypothalamic neuroimmune and neuromodulator systems in neonatal rats , 2018, Toxicology and applied pharmacology.

[66]  M. Weisskopf,et al.  Amyotrophic Lateral Sclerosis and Exposure to Diesel Exhaust in a Danish Cohort , 2018, American journal of epidemiology.

[67]  R. Chang,et al.  Silica nanoparticles induce neurodegeneration-like changes in behavior, neuropathology, and affect synapse through MAPK activation , 2018, Particle and Fibre Toxicology.

[68]  N. Duale,et al.  Gene expression changes in rat brain regions after 7- and 28 days inhalation exposure to exhaust emissions from 1st and 2nd generation biodiesel fuels - The FuelHealth project , 2018, Inhalation toxicology.

[69]  R. Kulesza,et al.  Hallmarks of Alzheimer disease are evolving relentlessly in Metropolitan Mexico City infants, children and young adults. APOE4 carriers have higher suicide risk and higher odds of reaching NFT stage V at ≤ 40 years of age , 2018, Environmental research.

[70]  C. van Broeckhoven,et al.  ALS Genes in the Genomic Era and their Implications for FTD. , 2018, Trends in genetics : TIG.

[71]  Michael K Danquah,et al.  Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations , 2018, Beilstein journal of nanotechnology.

[72]  B. Bocca,et al.  Trace elements in ALS patients and their relationships with clinical severity. , 2018, Chemosphere.

[73]  Salvatore F. E. Oliviero,et al.  SiO2 nanoparticles modulate the electrical activity of neuroendocrine cells without exerting genomic effects , 2018, Scientific Reports.

[74]  G. Schaumann,et al.  Nanoparticles in the environment: where do we come from, where do we go to? , 2018, Environmental Sciences Europe.

[75]  Roger M. Leblanc,et al.  Crossing the blood‐brain barrier with nanoparticles , 2018, Journal of controlled release : official journal of the Controlled Release Society.

[76]  Ekambaram Perumal,et al.  Iron Oxide Nanoparticles Induces Cell Cycle-Dependent Neuronal Apoptosis in Mice , 2018, Journal of Molecular Neuroscience.

[77]  A. Andrew,et al.  Toenail mercury Levels are associated with amyotrophic lateral sclerosis risk , 2018, Muscle & nerve.

[78]  D. Lovisolo,et al.  Nanoparticles and potential neurotoxicity: focus on molecular mechanisms , 2018 .

[79]  M. E. Díaz-García,et al.  Unctuous ZrO2 nanoparticles with improved functional attributes as lubricant additives , 2017, Nanotechnology.

[80]  Matthew H. Brush,et al.  Chronic oxidative stress promotes GADD34-mediated phosphorylation of the TAR DNA-binding protein TDP-43, a modification linked to neurodegeneration , 2017, The Journal of Biological Chemistry.

[81]  S. Signorelli,et al.  Metals and neurodegenerative diseases. A systematic review , 2017, Environmental research.

[82]  Valeria De Matteis,et al.  Exposure to Inorganic Nanoparticles: Routes of Entry, Immune Response, Biodistribution and In Vitro/In Vivo Toxicity Evaluation , 2017, Toxics.

[83]  V. D. Matteis Exposure to Inorganic Nanoparticles: Routes of Entry, Immune Response, Biodistribution and In Vitro/In Vivo Toxicity Evaluation. , 2017 .

[84]  P. Sham,et al.  The role of gene variants in the pathogenesis of neurodegenerative disorders as revealed by next generation sequencing studies: a review , 2017, Translational Neurodegeneration.

[85]  A. Lund,et al.  Brain Inflammation, Blood Brain Barrier dysfunction and Neuronal Synaptophysin Decrease after Inhalation Exposure to Titanium Dioxide Nano-aerosol in Aging Rats , 2017, Scientific Reports.

[86]  M. Vinceti,et al.  Lead, cadmium and mercury in cerebrospinal fluid and risk of amyotrophic lateral sclerosis: A case-control study. , 2017, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.

[87]  J. Little,et al.  Identification of risk factors associated with onset and progression of amyotrophic lateral sclerosis using systematic review and meta‐analysis , 2017, Neurotoxicology.

[88]  K. Ghaedi,et al.  Iron oxide nanoparticles may damage to the neural tissue through iron accumulation, oxidative stress, and protein aggregation , 2017, BMC Neuroscience.

[89]  H. Walach,et al.  Healing of Amyotrophic Lateral Sclerosis: A Case Report , 2017, Complementary Medicine Research.

[90]  Khalid Saeed,et al.  Nanoparticles: Properties, applications and toxicities , 2017, Arabian Journal of Chemistry.

[91]  D. Sherr,et al.  Dioxins and related environmental contaminants increase TDP-43 levels , 2017, Molecular Neurodegeneration.

[92]  B. Gulson,et al.  Lead exposure at firing ranges—a review , 2017, Environmental Health.

[93]  Silke Schmidt,et al.  Retrospective Assessment of Occupational Exposures for the GENEVA Study of ALS among Military Veterans , 2017, Annals of work exposures and health.

[94]  G. García-Rivas,et al.  Silica nanoparticles induce cardiotoxicity interfering with energetic status and Ca2+ handling in adult rat cardiomyocytes. , 2017, American journal of physiology. Heart and circulatory physiology.

[95]  Marilena Hadjidemetriou,et al.  Nanomedicine: Evolution of the nanoparticle corona. , 2017, Nature nanotechnology.

[96]  C. Del Bo’,et al.  Blood trace metals in a sporadic amyotrophic lateral sclerosis geographical cluster , 2017, BioMetals.

[97]  T. Coccini,et al.  Cytotoxicity and proliferative capacity impairment induced on human brain cell cultures after short‐ and long‐term exposure to magnetite nanoparticles , 2017, Journal of applied toxicology : JAT.

[98]  S. Davies Living near major roads and the incidence of dementia, Parkinson’s disease, and multiple sclerosis: a population-based cohort study , 2017 .

[99]  S. Zahran,et al.  Motor neuron disease mortality and lifetime petrol lead exposure: Evidence from national age‐specific and state‐level age‐standardized death rates in Australia , 2017, Environmental research.

[100]  A. Andrew,et al.  Environmental and Occupational Exposures and Amyotrophic Lateral Sclerosis in New England , 2017, Neurodegenerative Diseases.

[101]  T. Obis,et al.  Organophosphate neurotoxicity to the voluntary motor system on the trail of environment-caused amyotrophic lateral sclerosis: the known, the misknown, and the unknown , 2017, Archives of Toxicology.

[102]  J. Coleman,et al.  Wartime toxin exposure: recognising the silent killer , 2016, BMJ Case Reports.

[103]  C. Tohyama,et al.  Dioxin induces Ahr-dependent robust DNA demethylation of the Cyp1a1 promoter via Tdg in the mouse liver , 2016, Scientific Reports.

[104]  D. Mann,et al.  Magnetite pollution nanoparticles in the human brain , 2016, Proceedings of the National Academy of Sciences.

[105]  S. Petersen,et al.  Developmental exposure to 2,3,7,8-tetrachlorodibenzo-p-dioxin may alter LH release patterns by abolishing sex differences in GABA/glutamate cell number and modifying the transcriptome of the male anteroventral periventricular nucleus , 2016, Neuroscience.

[106]  M. Kakeyama,et al.  In utero and lactational dioxin exposure induces Sema3b and Sema3g gene expression in the developing mouse brain. , 2016, Biochemical and biophysical research communications.

[107]  L. El Mir,et al.  The effect of titanium dioxide nanoparticles on neuroinflammation response in rat brain , 2016, Environmental Science and Pollution Research.

[108]  Stuart Batterman,et al.  Association of Environmental Toxins With Amyotrophic Lateral Sclerosis. , 2016, JAMA neurology.

[109]  Jennifer H. Kawata,et al.  Burn Pit Emissions Exposure and Respiratory and Cardiovascular Conditions Among Airborne Hazards and Open Burn Pit Registry Participants , 2016, Journal of occupational and environmental medicine.

[110]  R. Rojas-García,et al.  ALS: A bucket of genes, environment, metabolism and unknown ingredients , 2016, Progress in Neurobiology.

[111]  Huile Gao,et al.  Progress and perspectives on targeting nanoparticles for brain drug delivery , 2016, Acta pharmaceutica Sinica. B.

[112]  B. Grajewski,et al.  Mortality from neurodegenerative diseases in a cohort of US flight attendants. , 2016, American journal of industrial medicine.

[113]  B. Rothen‐Rutishauser,et al.  Diesel exhaust: current knowledge of adverse effects and underlying cellular mechanisms , 2016, Archives of Toxicology.

[114]  C. Jaramillo,et al.  Increasing Prevalence of Chronic Lung Disease in Veterans of the Wars in Iraq and Afghanistan. , 2016, Military medicine.

[115]  D. Richardson,et al.  Military service, deployments, and exposures in relation to amyotrophic lateral sclerosis etiology. , 2016, Environment international.

[116]  Jia Liu,et al.  Unraveling the neurotoxicity of titanium dioxide nanoparticles: focusing on molecular mechanisms , 2016, Beilstein journal of nanotechnology.

[117]  S. Schmidt,et al.  Blood levels of trace metals and amyotrophic lateral sclerosis. , 2016, Neurotoxicology.

[118]  J. Teixeira,et al.  Are iron oxide nanoparticles safe? Current knowledge and future perspectives. , 2016, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.

[119]  C. Bourke Molybdenum Deficiency Produces Motor Nervous Effects That Are Consistent with Amyotrophic Lateral Sclerosis , 2016, Front. Neurol..

[120]  Jessica M Sharkey,et al.  Postdeployment Respiratory Health Care Encounters Following Deployment to Kabul, Afghanistan: A Retrospective Cohort Study. , 2016, Military medicine.

[121]  E. Evangelou,et al.  Environmental Risk Factors and Amyotrophic Lateral Sclerosis: An Umbrella Review and Critical Assessment of Current Evidence from Systematic Reviews and Meta-Analyses of Observational Studies , 2016, Neuroepidemiology.

[122]  R. Sabaté,et al.  Magnetic Nanoparticles Cross the Blood-Brain Barrier: When Physics Rises to a Challenge , 2015, Nanomaterials.

[123]  A. Kasperczyk,et al.  The effect of occupational lead exposure on lipid peroxidation, protein carbonylation, and plasma viscosity , 2015, Toxicology and industrial health.

[124]  Josep Samitier,et al.  Magnetite-Amyloid-β deteriorates activity and functional organization in an in vitro model for Alzheimer’s disease , 2015, Scientific Reports.

[125]  A. K. Singh Engineered Nanoparticles: Structure, Properties and Mechanisms of Toxicity Ashok K. Singh , 2015 .

[126]  M. Weisskopf,et al.  Amyotrophic Lateral Sclerosis and the Military: A Population-based Study in the Danish Registries , 2015, Epidemiology.

[127]  T. O'hara,et al.  Mercury, selenium and fish oils in marine food webs and implications for human health , 2015, Journal of the Marine Biological Association of the United Kingdom.

[128]  Jeffry D Schroeter,et al.  Olfactory deposition of inhaled nanoparticles in humans , 2015, Inhalation toxicology.

[129]  M. Paule,et al.  Iron Oxide Nanoparticles Induce Dopaminergic Damage: In vitro Pathways and In Vivo Imaging Reveals Mechanism of Neuronal Damage , 2015, Molecular Neurobiology.

[130]  Thomas J. Nicholas,et al.  Whole genome analyses reveal no pathogenetic single nucleotide or structural differences between monozygotic twins discordant for amyotrophic lateral sclerosis , 2015, Amyotrophic lateral sclerosis & frontotemporal degeneration.

[131]  H. Nishijo,et al.  Dioxins and Nonortho PCBs in Breast Milk of Vietnamese Mothers Living in the Largest Hot Spot of Dioxin Contamination. , 2015, Environmental science & technology.

[132]  M. Obermann,et al.  Financial cost of amyotrophic lateral sclerosis: A case study , 2015, Amyotrophic lateral sclerosis & frontotemporal degeneration.

[133]  T. Miller,et al.  TARDBP-Related Amyotrophic Lateral Sclerosis , 2015 .

[134]  F. Hong,et al.  Mechanisms of TiO2 nanoparticle-induced neuronal apoptosis in rat primary cultured hippocampal neurons. , 2015, Journal of biomedical materials research. Part A.

[135]  F. Piehl,et al.  Risk factors for amyotrophic lateral sclerosis , 2015, Clinical epidemiology.

[136]  Timothy A. Miller,et al.  Amyotrophic lateral sclerosis onset is influenced by the burden of rare variants in known amyotrophic lateral sclerosis genes , 2015, Annals of neurology.

[137]  G. Rouleau,et al.  Dissection of genetic factors associated with amyotrophic lateral sclerosis , 2014, Experimental Neurology.

[138]  E. Cha,et al.  Amyotrophic Lateral Sclerosis and Agricultural Environments: A Systematic Review , 2014, Journal of Korean medical science.

[139]  N. Pearce,et al.  Analysis of amyotrophic lateral sclerosis as a multistep process: a population-based modelling study , 2014, The Lancet Neurology.

[140]  M. Peana,et al.  Toxicity of nanoparticles. , 2014, Current medicinal chemistry.

[141]  Ying Liu,et al.  Right or Left: The Role of Nanoparticles in Pulmonary Diseases , 2014, International journal of molecular sciences.

[142]  Quan Ma,et al.  Uptake of silica nanoparticles: neurotoxicity and Alzheimer-like pathology in human SK-N-SH and mouse neuro2a neuroblastoma cells. , 2014, Toxicology letters.

[143]  Swaleha Zubair,et al.  Physicochemical Properties of Nanomaterials: Implication in Associated Toxic Manifestations , 2014, BioMed research international.

[144]  Gilles J. Guillemin,et al.  The Potential for Transition Metal-Mediated Neurodegeneration in Amyotrophic Lateral Sclerosis , 2014, Front. Aging Neurosci..

[145]  R. Harrison,et al.  Aircraft engine exhaust emissions and other airport-related contributions to ambient air pollution: A review , 2014, Atmospheric Environment.

[146]  K. Yoshimoto,et al.  2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) induces expression of p27(kip¹) and FoxO3a in female rat cerebral cortex and PC12 cells. , 2014, Toxicology letters.

[147]  A. Allan,et al.  The Effects of Arsenic Exposure on Neurological and Cognitive Dysfunction in Human and Rodent Studies: A Review , 2014, Current Environmental Health Reports.

[148]  N. Hopf,et al.  Mortality among 24,865 workers exposed to polychlorinated biphenyls (PCBs) in three electrical capacitor manufacturing plants: a ten-year update. , 2014, International journal of hygiene and environmental health.

[149]  E. Fröhlich,et al.  Toxicological Assessment of Inhaled Nanoparticles: Role of in Vivo, ex Vivo, in Vitro, and in Silico Studies , 2014, International journal of molecular sciences.

[150]  P. Crouch,et al.  Increased metal content in the TDP-43A315T transgenic mouse model of frontotemporal lobar degeneration and amyotrophic lateral sclerosis , 2014, Front. Aging Neurosci..

[151]  G. Nienhaus,et al.  Engineered nanoparticles interacting with cells: size matters , 2014, Journal of Nanobiotechnology.

[152]  Bo Liu,et al.  SiO2 nanoparticles change colour preference and cause Parkinson's-like behaviour in zebrafish , 2014, Scientific Reports.

[153]  Lisa H. Mason,et al.  Pb Neurotoxicity: Neuropsychological Effects of Lead Toxicity , 2014, BioMed research international.

[154]  J. Weuve,et al.  Polychlorinated Biphenyl Exposures and Cognition in Older U.S. Adults: NHANES (1999–2002) , 2013, Environmental health perspectives.

[155]  R. Pamphlett,et al.  Different Occupations Associated with Amyotrophic Lateral Sclerosis: Is Diesel Exhaust the Link? , 2013, PloS one.

[156]  C. Brady,et al.  The Department of Veterans Affairs Biorepository Brain Bank: A national resource for amyotrophic lateral sclerosis research , 2013, Amyotrophic lateral sclerosis & frontotemporal degeneration.

[157]  C. Wan,et al.  2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) induces microglial nitric oxide production and subsequent rat primary cortical neuron apoptosis through p38/JNK MAPK pathway. , 2013, Toxicology.

[158]  R. Harrison,et al.  Estimation of the contribution of road traffic emissions to particulate matter concentrations from field measurements: A review , 2013 .

[159]  J. Sinsheimer,et al.  Pesticides that inhibit the ubiquitin-proteasome system: effect measure modification by genetic variation in SKP1 in Parkinson׳s disease. , 2013, Environmental research.

[160]  Harold I. Zeliger,et al.  Exposure to lipophilic chemicals as a cause of neurological impairments, neurodevelopmental disorders and neurodegenerative diseases , 2013, Interdisciplinary toxicology.

[161]  M. Vinceti,et al.  Cerebrospinal fluid of newly diagnosed amyotrophic lateral sclerosis patients exhibits abnormal levels of selenium species including elevated selenite. , 2013, Neurotoxicology.

[162]  G. Tedeschi,et al.  Exposure to Environmental Toxicants and Pathogenesis of Amyotrophic Lateral Sclerosis: State of the Art and Research Perspectives , 2013, International journal of molecular sciences.

[163]  M. Weiner,et al.  Military risk factors for Alzheimer's disease , 2013, Alzheimer's & Dementia.

[164]  Chandrakantsing V. Pardeshi,et al.  Direct nose to brain drug delivery via integrated nerve pathways bypassing the blood–brain barrier: an excellent platform for brain targeting , 2013, Expert opinion on drug delivery.

[165]  K. Yoshimoto,et al.  2,3,7,8-Tetrachlorodibenzo-p-dioxin-induced inflammatory activation is mediated by intracellular free calcium in microglial cells. , 2013, Toxicology.

[166]  Bin Zhao,et al.  AhR-Mediated Effects of Dioxin on Neuronal Acetylcholinesterase Expression in Vitro , 2013, Environmental health perspectives.

[167]  T. Guilarte,et al.  Mechanisms of lead and manganese neurotoxicity. , 2013, Toxicology research.

[168]  Philip M. Kelly,et al.  Transferrin-functionalized nanoparticles lose their targeting capabilities when a biomolecule corona adsorbs on the surface. , 2013, Nature nanotechnology.

[169]  M. Nordberg,et al.  Metal Concentrations in Cerebrospinal Fluid and Blood Plasma from Patients with Amyotrophic Lateral Sclerosis , 2013, Biological Trace Element Research.

[170]  Hector A Olvera,et al.  Ultrafine particle levels at an international port of entry between the US and Mexico: Exposure implications for users, workers, and neighbors , 2013, Journal of Exposure Science and Environmental Epidemiology.

[171]  Marusia Popovech,et al.  Rapid doubling of Alzheimer’s amyloid-β40 and 42 levels in brains of mice exposed to a nickel nanoparticle model of air pollution , 2012, F1000Research.

[172]  Jie Wu,et al.  Four types of inorganic nanoparticles stimulate the inflammatory reaction in brain microglia and damage neurons in vitro. , 2012, Toxicology letters.

[173]  Xue-Qing Zhang,et al.  Interactions of nanomaterials and biological systems: Implications to personalized nanomedicine. , 2012, Advanced drug delivery reviews.

[174]  A. Miranda-Vizuete,et al.  Selenium induces cholinergic motor neuron degeneration in Caenorhabditis elegans. , 2012, Neurotoxicology.

[175]  S. Przedborski,et al.  The Role of the Innate Immune System in ALS , 2012, Front. Pharmacol..

[176]  M. Nordberg,et al.  Manganese in cerebrospinal fluid and blood plasma of patients with amyotrophic lateral sclerosis , 2012, Experimental biology and medicine.

[177]  S. Schmidt,et al.  Pesticide exposure and amyotrophic lateral sclerosis. , 2012, Neurotoxicology.

[178]  Dusan Losic,et al.  Nanoengineered drug-releasing Ti wires as an alternative for local delivery of chemotherapeutics in the brain , 2012, International journal of nanomedicine.

[179]  Jeff H. Duyn,et al.  Iron Accumulation in Deep Cortical Layers Accounts for MRI Signal Abnormalities in ALS: Correlating 7 Tesla MRI and Pathology , 2012, PloS one.

[180]  D. Sonntag,et al.  Contribution of lubricating oil to particulate matter emissions from light-duty gasoline vehicles in Kansas City. , 2012, Environmental science & technology.

[181]  J W Fisher,et al.  Subchronic Jp-8 Jet Fuel Exposure Enhances Vulnerability To Noise-Induced Hearing Loss In Rats , 2012, Journal of toxicology and environmental health. Part A.

[182]  G. Daston,et al.  Toxicology of nanoparticles. , 2012, Advanced drug delivery reviews.

[183]  W. Meier,et al.  Effects of Silver Nanoparticles on Primary Mixed Neural Cell Cultures: Uptake, Oxidative Stress and Acute Calcium Responses , 2012, Toxicological sciences : an official journal of the Society of Toxicology.

[184]  M. Aschner,et al.  Mechanisms of methylmercury-induced neurotoxicity: evidence from experimental studies. , 2011, Life sciences.

[185]  D. German,et al.  β-Hexachlorocyclohexane levels in serum and risk of Parkinson's disease. , 2011, Neurotoxicology.

[186]  Yuji Tanaka,et al.  Patterns of levels of biological metals in CSF differ among neurodegenerative diseases , 2011, Journal of the Neurological Sciences.

[187]  A. Graham,et al.  Composition of smoke generated by landing aircraft. , 2011, Environmental science & technology.

[188]  W. Le,et al.  Prevention of Motor Neuron Degeneration by Novel Iron Chelators in SOD1G93A Transgenic Mice of Amyotrophic Lateral Sclerosis , 2011, Neurodegenerative Diseases.

[189]  M. Ahamed,et al.  Silver nanoparticle applications and human health. , 2010, Clinica chimica acta; international journal of clinical chemistry.

[190]  Merle G Paule,et al.  Silver nanoparticle induced blood-brain barrier inflammation and increased permeability in primary rat brain microvessel endothelial cells. , 2010, Toxicological sciences : an official journal of the Society of Toxicology.

[191]  A. Al-Chalabi,et al.  An estimate of amyotrophic lateral sclerosis heritability using twin data , 2010, Journal of Neurology, Neurosurgery & Psychiatry.

[192]  L. Goldstein,et al.  The sex ratio in amyotrophic lateral sclerosis: A population based study , 2010, Amyotrophic lateral sclerosis : official publication of the World Federation of Neurology Research Group on Motor Neuron Diseases.

[193]  K. Gruis,et al.  The Association of Exposure to Lead, Mercury, and Selenium and the Development of Amyotrophic Lateral Sclerosis and the Epigenetic Implications , 2010, Neurodegenerative Diseases.

[194]  S. Schmidt,et al.  Original Contribution Association Between Blood Lead and the Risk of Amyotrophic Lateral Sclerosis , 2010 .

[195]  J. Bonner Nanoparticles as a potential cause of pleural and interstitial lung disease. , 2010, Proceedings of the American Thoracic Society.

[196]  Tomás R. Guilarte,et al.  Manganese and Parkinson’s Disease: A Critical Review and New Findings , 2010, Environmental health perspectives.

[197]  Teresa Moreno,et al.  Concentrations, sources and geochemistry of airborne particulate matter at a major European airport. , 2010, Journal of environmental monitoring : JEM.

[198]  A. Basu,et al.  A Common Carcinogen Benzo[a]pyrene Causes Neuronal Death in Mouse via Microglial Activation , 2010, PloS one.

[199]  J. Mukhopadhyay,et al.  Arsenicosis: unusual neurological presentation from West Bengal. , 2010, The Journal of the Association of Physicians of India.

[200]  I. Decordier,et al.  Increased micronuclei and bulky DNA adducts in cord blood after maternal exposures to traffic-related air pollution. , 2009, Environmental research.

[201]  C. Portier,et al.  AhR-mediated gene expression in the developing mouse telencephalon. , 2009, Reproductive toxicology.

[202]  D. German,et al.  Elevated serum pesticide levels and risk of Parkinson disease. , 2009, Archives of neurology.

[203]  M Laird Forrest,et al.  Effects of nanomaterial physicochemical properties on in vivo toxicity. , 2009, Advanced drug delivery reviews.

[204]  D. Umbach,et al.  Workplace Exposures and the Risk of Amyotrophic Lateral Sclerosis , 2009, Environmental health perspectives.

[205]  P. Ponka,et al.  Dysregulation of Iron Homeostasis in the CNS Contributes to Disease Progression in a Mouse Model of Amyotrophic Lateral Sclerosis , 2009, The Journal of Neuroscience.

[206]  Wei Zheng,et al.  Copper transport to the brain by the blood-brain barrier and blood-CSF barrier , 2009, Brain Research.

[207]  W. Bradley,et al.  Cyanobacteria and BMAA exposure from desert dust: A possible link to sporadic ALS among Gulf War veterans , 2009, Amyotrophic lateral sclerosis : official publication of the World Federation of Neurology Research Group on Motor Neuron Diseases.

[208]  N. Ralston Selenium Health Benefit Values as Seafood Safety Criteria , 2008, EcoHealth.

[209]  G. Miller,et al.  Disruption of dopamine transport by DDT and its metabolites. , 2008, Neurotoxicology.

[210]  S. Grambow,et al.  Amyotrophic Lateral Sclerosis among 1991 Gulf War Veterans: Evidence for a Time-Limited Outbreak , 2008, Neuroepidemiology.

[211]  G. Miller,et al.  Parkinson's disease and pesticides: a toxicological perspective. , 2008, Trends in pharmacological sciences.

[212]  K. Srogi Levels and congener distributions of PCDDs, PCDFs and dioxin-like PCBs in environmental and human samples: a review , 2008 .

[213]  Nastassja A. Lewinski,et al.  Cytotoxicity of nanoparticles. , 2008, Small.

[214]  X. Chen,et al.  Nanosilver: a nanoproduct in medical application. , 2008, Toxicology letters.

[215]  P. Corcia,et al.  ALS and mercury intoxication: A relationship? , 2007, Clinical Neurology and Neurosurgery.

[216]  T. Shea,et al.  Potentiation of arsenic neurotoxicity by folate deprivation: Protective role of S-adenosyl methionine , 2007, Nutritional neuroscience.

[217]  F. A. de Wolff,et al.  Arsenic neurotoxicity — A review , 2007, Human & experimental toxicology.

[218]  Xiongwei Zhu,et al.  Iron: The Redox-active Center of Oxidative Stress in Alzheimer Disease , 2007, Neurochemical Research.

[219]  Dean P. Jones,et al.  Dieldrin exposure induces oxidative damage in the mouse nigrostriatal dopamine system , 2007, Experimental Neurology.

[220]  Shing-Hwa Liu,et al.  Differential neurotoxic effects of methylmercury and mercuric sulfide in rats. , 2007, Toxicology letters.

[221]  Sara Linse,et al.  Understanding the nanoparticle–protein corona using methods to quantify exchange rates and affinities of proteins for nanoparticles , 2007, Proceedings of the National Academy of Sciences.

[222]  Salil K. Das,et al.  Benzo(a)pyrene‐induced acute neurotoxicity in the F‐344 rat: role of oxidative stress , 2006, Journal of applied toxicology : JAT.

[223]  M. Q. Kemp,et al.  Induction of the transferrin receptor gene by benzo[a]pyrene in breast cancer MCF‐7 cells: Potential as a biomarker of PAH exposure , 2006, Environmental and molecular mutagenesis.

[224]  J. Finkelstein,et al.  Translocation of Inhaled Ultrafine Manganese Oxide Particles to the Central Nervous System , 2006, Environmental health perspectives.

[225]  M. Rose,et al.  Neurological disorders in Gulf War veterans , 2006, Philosophical Transactions of the Royal Society B: Biological Sciences.

[226]  Jack A. Taylor,et al.  Lead Exposure as a Risk Factor for Amyotrophic Lateral Sclerosis , 2006, Neurodegenerative Diseases.

[227]  M. Hotopf,et al.  Can epidemiology clear the fog of war? Lessons from the 1990-91 Gulf War. , 2005, International journal of epidemiology.

[228]  M. Dosemeci,et al.  Potential occupational risks for neurodegenerative diseases. , 2005, American journal of industrial medicine.

[229]  S. Grambow,et al.  Estimating the Occurrence of Amyotrophic Lateral Sclerosis among Gulf War (1990–1991) Veterans Using Capture-Recapture Methods , 2005, Neuroepidemiology.

[230]  Paul Succop,et al.  Effects of Concurrent Noise and Jet Fuel Exposure on Hearing Loss , 2005, Journal of occupational and environmental medicine.

[231]  M. Thun,et al.  Prospective study of military service and mortality from ALS , 2005, Neurology.

[232]  S. Edge,et al.  Breast cancer risk and exposure in early life to polycyclic aromatic hydrocarbons using total suspended particulates as a proxy measure. , 2005, Cancer epidemiology, biomarkers & prevention : a publication of the American Association for Cancer Research, cosponsored by the American Society of Preventive Oncology.

[233]  C. Armon Excess incidence of ALS in young Gulf War veterans , 2004, Neurology.

[234]  C. Armon Occurrence of amyotrophic lateral sclerosis among Gulf War veterans , 2004, Neurology.

[235]  W. Kreyling,et al.  Translocation of Inhaled Ultrafine Particles to the Brain , 2004, Inhalation toxicology.

[236]  C. Howard,et al.  Neurodevelopmental defects in zebrafish (Danio rerio) at environmentally relevant dioxin (TCDD) concentrations. , 2003, Toxicological sciences : an official journal of the Society of Toxicology.

[237]  Han K. Kang,et al.  Mortality among US and UK veterans of the Persian Gulf War: a review , 2002, Occupational and environmental medicine.

[238]  M. Vinceti,et al.  Environmental exposure to trace elements and risk of amyotrophic lateral sclerosis: a population-based case-control study. , 2002, Environmental research.

[239]  J. Carson,et al.  Air Pollution and Brain Damage , 2002, Toxicologic pathology.

[240]  E. Richter,et al.  Amyotrophic Lateral Sclerosis in a Battery-factory Worker Exposed to Cadmium , 2001, International journal of occupational and environmental health.

[241]  F.M. Corrigan, C.L. Wienburg, R.F. Shore, S.E. Dan ORGANOCHLORINE INSECTICIDES IN SUBSTANTIA NIGRA IN PARKINSON'S DISEASE , 2000 .

[242]  Sanford D Zelnick,et al.  Personal exposure to JP-8 jet fuel vapors and exhaust at air force bases. , 2000, Environmental health perspectives.

[243]  D. Phillips,et al.  Polycyclic aromatic hydrocarbons in the diet. , 1999, Mutation research.

[244]  B. Grosche,et al.  Mortality among US commercial pilots and navigators. , 1998, Journal of occupational and environmental medicine.

[245]  Thomas W. Kirchstetter,et al.  On-Road Emissions of Particulate Polycyclic Aromatic Hydrocarbons and Black Carbon from Gasoline and Diesel Vehicles , 1998 .

[246]  A. Luch,et al.  Stereoselective activation of dibenzo[a,l]pyrene and its trans-11,12-dihydrodiol to fjord region 11,12-diol 13,14-epoxides in a human mammary carcinoma MCF-7 cell-mediated V79 cell mutation assay. , 1997, Chemical research in toxicology.

[247]  E. Kapaki,et al.  Trace elements, age, and sex in amyotrophic lateral sclerosis disease , 1997, Biological Trace Element Research.

[248]  J. Santodonato Review of the estrogenic and antiestrogenic activity of polycyclic aromatic hydrocarbons: relationship to carcinogenicity. , 1997, Chemosphere.

[249]  M. Vinceti,et al.  Amyotrophic lateral sclerosis after long-term exposure to drinking water with high selenium content. , 1996, Epidemiology.

[250]  F. Corrigan,et al.  Organochlorine compounds in human brain , 1996, Human & experimental toxicology.

[251]  W. D. Ehmann,et al.  Neutron activation analysis of trace elements in motor neuron disease spinal cord. , 1995, Neurodegeneration : a journal for neurodegenerative disorders, neuroprotection, and neuroregeneration.

[252]  W. D. Ehmann,et al.  Aluminum, calcium, and iron in the spinal cord of patients with sporadic amyotrophic lateral sclerosis using laser microprobe mass spectroscopy: a preliminary study , 1995, Journal of the Neurological Sciences.

[253]  C. Snyder,et al.  Lead alters the immunogenicity of two neural proteins: a potential mechanism for the progression of lead-induced neurotoxicity. , 1994, Environmental health perspectives.

[254]  S. Schantz,et al.  PCB congeners in the rat brain: selective accumulation and lack of regionalization. , 1994, Journal of toxicology and environmental health.

[255]  H. Satoh,et al.  Mercury and selenium contents in amyotrophic lateral sclerosis in Hokkaido, the northernmost island of Japan , 1993, Journal of the Neurological Sciences.

[256]  E. Kapaki,et al.  Zinc, copper and magnesium concentration in serum and CSF of patients with neurological disorders , 1989, Acta neurologica Scandinavica.

[257]  B. W. East,et al.  Trace elements in the spinal cord and other tissues in motor neuron disease. , 1986, Journal of neurology, neurosurgery, and psychiatry.

[258]  L. Birnbaum The role of structure in the disposition of halogenated aromatic xenobiotics. , 1985, Environmental health perspectives.

[259]  Shigenobu Nakamura,et al.  Increased manganese level in spinal cords of amyotrophic lateral sclerosis determined by radiochemical neutron activation analysis , 1983, Journal of the Neurological Sciences.

[260]  D. Ziegler,et al.  Mercury intoxication simulating amyotrophic lateral sclerosis. , 1983, JAMA.

[261]  T. Kashimoto,et al.  Polycyclic aromatic hydrocarbons in human fat and liver , 1981, Bulletin of environmental contamination and toxicology.

[262]  M. Cempel,et al.  [Neurological examinations of workers with chronic exposure to manganese dioxide during the production of piles and batteries]. , 1978, Neurologia i neurochirurgia polska.

[263]  A. W. Kilness,et al.  Amyotrophic lateral sclerosis in a high selenium environment. , 1977, JAMA.

[264]  A. Engin Combined Toxicity of Metal Nanoparticles: Comparison of Individual and Mixture Particles Effect. , 2021, Advances in experimental medicine and biology.

[265]  A. Pandey,et al.  Nanoparticles as Modulators of Oxidative Stress , 2019, Nanotechnology in Modern Animal Biotechnology.

[266]  R. Kulesza,et al.  Increased Gain in the Auditory Pathway, Alzheimer's Disease Continuum, and Air Pollution: Peripheral and Central Auditory System Dysfunction Evolves Across Pediatric and Adult Urbanites. , 2019, Journal of Alzheimer's disease : JAD.

[267]  Kent E. Pinkerton,et al.  Repeated Iron–Soot Exposure and Nose-to-brain Transport of Inhaled Ultrafine Particles , 2018, Toxicologic pathology.

[268]  Tianshu Wu,et al.  The inflammatory response to silver and titanium dioxide nanoparticles in the central nervous system. , 2018, Nanomedicine.

[269]  A. Grzelak,et al.  Nanoparticles-Caused Oxidative Imbalance. , 2018, Advances in experimental medicine and biology.

[270]  N. Pearce,et al.  The multistep hypothesis of ALS revisited , 2018, Neurology.

[271]  Vinay Kumar,et al.  Impact of Nanoparticles on Oxidative Stress and Responsive Antioxidative Defense in Plants , 2018 .

[272]  Xinguo Jiang,et al.  Neurotoxicity of Nanomaterials and Nanomedicine , 2016 .

[273]  房晨婕 Implications for blood-brain-barrier permeability,in vitro oxidative stress and neurotoxicity potential induced by mesoporous silica nanoparticles:effects of surface modification , 2015 .

[274]  F. Kamel,et al.  Military service, deployments, and exposures in relation to amyotrophic lateral sclerosis etiology and survival. , 2015, Epidemiologic reviews.

[275]  K Steenland,et al.  Occupational pesticide exposure and screening tests for neurodegenerative disease among an elderly population in Costa Rica. , 2013, Environmental research.

[276]  A. Ludolph,et al.  Amyotrophic lateral sclerosis. , 2012, Current opinion in neurology.

[277]  M. Vinceti,et al.  Are environmental exposures to selenium, heavy metals, and pesticides risk factors for amyotrophic lateral sclerosis? , 2012, Reviews on environmental health.

[278]  R. Garruto,et al.  Concentrations of Cd, Co, Cu, Fe, Mn, Rb, V, and Zn in formalin-fixed brain tissue in amyotrophic lateral sclerosis and parkinsonism-dementia complex of guam determined by high-resolution ICP-MS , 2007, Biological Trace Element Research.

[279]  K. Hyams,et al.  Resolving Disputes About Toxicological Risks During Military Conflict , 2005, Toxicological reviews.

[280]  M. Purdey Elevated levels of ferrimagnetic metals in foodchains supporting the Guam cluster of neurodegeneration: do metal nucleated crystal contaminants [corrected] evoke magnetic fields that initiate the progressive pathogenesis of neurodegeneration? , 2004, Medical hypotheses.

[281]  T. Amagai,et al.  Polycyclic aromatic hydrocarbons in indoor and outdoor environments and factors affecting their concentrations. , 2004, Environmental science & technology.

[282]  P. Shields,et al.  Molecular epidemiology of breast cancer. , 1997, Progress in clinical and biological research.

[283]  B. Arvidson Accumulation of inorganic mercury in lower motoneurons of mice. , 1992, Neurotoxicology.

[284]  W. D. Ehmann,et al.  Trace element imbalances in amyotrophic lateral sclerosis. , 1990, Neurotoxicology.

[285]  R. Yanagihara Heavy metals and essential minerals in motor neuron disease. , 1982, Advances in neurology.

[286]  H. Voss Progressive Bulbar Paralysis and Amyotrophie Lateral Sclerosis Following Chronic Manganese Poisoning. , 1939 .