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54 results for “Occupational Exposure”
Named Entity Corpus for Occupational Substance Exposure Assessment
<p>This is a corpus consisting of selected sections (i.e., <em>Abstract, Methods</em> and <em>Results</em>) of scientific research articles concerning occupational exposures to two different types of substance, i.e., diesel exhaust (51 articles) and respirable crystalline silica (RCS) (50 articles). The article sections have been annotated by experts in the field with 6 categories of named entities (NEs) relevant to the assessment of occupational substance exposures, particularly in the context of Job Exposure Matrices (JEMs).</p> <p>The corpus is available in two different formats, <a href="https://brat.nlplab.org/standoff.html">brat standoff format</a> and JSON. </p> <p>The corpus and associated NER models are described in more detail in the following atricle, which should be cited if you use the corpus: </p> <p>Thompson, P., Ananiadou, S., Basinas I., Brinchmann, B. C., Cramer, C., Galea, K. S., Ge, C., Georgiadis, P., Kirkeleit, J., Kuijpers, E., Nguyen, N., Nuñez, R., Schlünssen, V., Stokholm, Z. A., Taher, E. A., Tinnerberg, H., Van Tongeren, M. and Xie, Q. (2024).<a href="https://doi.org/10.1371/journal.pone.0307844"> </a><a href="https://doi.org/10.1371/journal.pone.0307844">Supporting the working life exposome: annotating occupational exposure for enhanced literature search</a>. PLoS ONE 19(8): e0307844</p>
Fig. 1 in Toxoplasma gondii exposure in arctic-nesting geese: A multi-state occupancy framework and comparison of serological assays
Fig. 1. Comparison of seroprevalence estimates for Ross's Geese and Lesser Snow Geese generated by naïve and multi-state occupancy estimators (seroprevalence = Ψ1 × Ψ2).
Occupational exposure dataset for TiO2, carbon black and TiO2 and Ag;X
<p>The size-resolved emission rate distributions of the nanomaterials supported by occupational exposure web application (<a href="https://aerosol.cloud.nanosolveit.eu/">https://aerosol.cloud.nanosolveit.eu/</a>) hosted on NanoSolveIT Cloud Platform. distributions are based on experimental data from:<br> <br> <br> A. J. Koivisto, T. Hussein, R. Niemelä, T. Tuomi and K. Hämeri, Impact of particle emissions of new laser printers on modeled office room, Atmos. Environ., 2010, 44(17), 2140–2146.<br> <br> V. Gomez, M. Levin, A. T. Saber, S. Irusta, M. Dal Maso and R. Hanoi, et al., Comparison of Dust Release from Epoxy and Paint Nanocomposites and Conventional Products during Sanding and Sawing, Ann. Occup. Hyg., 2014, 58(8), 983–994.<br> <br> A. J. Koivisto, A. C. Ø. Jensen, K. I. Kling, J. Kling, H. C. Budtz and I. K. Koponen, et al., Particle emission rates during electrostatic spray deposition of TiO2 nanoparticlebased photoactive coating, J. Hazard. Mater., 2018, 341, 218–227.<br> <br> 1 A. J. Koivisto, K. I. Kling, A. S. Fonseca, A. B. Bluhme, M. Moreman and M. Yu, et al., Dip coating of air purifier ceramic honeycombs with photocatalytic TiO2 nanoparticles: A case study for occupational exposure, Sci. Total Environ., 2018, 630, 1283–1291.<br> <br> <br> Details for the usage of the database can be found in:<br> <br> P. Tsiros, N. Cheimarios, A. Tsoumanis, A.C.O. Jensen, G. Melagraki, I. Lynch, H. Sarimveis, A. Afantitis, “Towards an in silico Integrated Approach for Testing and Assessment of nanomaterials: from predicted indoor air concentrations to lung dose and biodistribution”, Environmental Science: Nano, 9, 1282, (2022).<br> https://pubs.rsc.org/en/content/articlelanding/2022/en/d1en00956g</p>
Occupational exposure to silica and risk of heart disease: a systematic review with meta-analysis
<p><b><span>Objective</span></b> To search for evidence of the relationship between occupational silica exposure and heart disease.</p> <p><b><span>Design</span></b> A systematic review and meta-analysis.</p> <p><b><span>Background</span></b> Growing evidences suggest a connection between occupational silica exposure and heart disease; however, the link between them is less clear.</p> <p><b><span>Data sources </span></b>PubMed, ScienceDirect, Springer and EMBASE were searched for articles published between 1 January 1995 and 20 June 2019. Articles that investigated the effects of occupational silica exposure on heart disease risk were considered.</p> <p><b><span>Study selection </span></b><span>We included c</span><span>ohort stud</span><span>ies</span>, including prospective, retrospective and retro-prospective studies.</p> <p><b><span>Data extraction and synthesis</span></b> We extracted data by using a piloted data collection form and conducted random-effects meta-analysis and exposure-response analyses. The meta-relative risk (meta-RR), a measure of the average ratio of heart disease rates for those with and without silica exposure, was used as an inverse variance-weighted average of relative risks from the individual studies. The Newcastle-Ottawa Quality assessment Scale about cohort studies was used for study quality assessment.</p> <p><b><span>Outcome measure</span></b> We calculated heart disease risks of pulmonary heart disease, ischaemic heart disease and other heart diseases.</p> <p><span><b><span>Results</span></b> Twenty cohort articles were included. Results suggest a significant increase of overall heart disease risk (meta-RR = 1.08, 95% CI = 1.03, 1.13). Stronger evidences of association with pulmonary heart disease were found through both categories of heart disease risk estimate (meta-RR = 1.24, 95% CI = 1.08, 1.43) and exposure-response analyses (meta-RR = 1.39, 95% CI = 1.19, 1.62). Moreover, our subgroup analyses revealed that the statistical heterogeneity among studies could be attributed mainly to the diversities of reference group, occupation and study quality score.</span></p> <p><b><span>Conclusions</span></b> Silica-exposed workers have increased risk of overall heart disease, especially pulmonary heart disease. While further research is needed to better clarify the relationship between occupational silica exposure and ischaemic heart disease.</p>
HIV Non Occupational Post-Exposure Prophylaxis (PEP)
ClinicalTrials.gov study NCT00594646. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Safety and Tolerability Study of GlaxoSmithKline (GSK)1557484A Vaccine in Adults at Occupational Risk for Influenza A (H5N1) Exposure
ClinicalTrials.gov study NCT01788228. IPD Sharing: YES. Countries: 1. Publications: 1.
Melanoma of the Skin and Exposure to Solar Ultraviolet Radiation at Work in Modena Territory: a Case-control Study to Promote an Active Search and Prevention of Occupational Diseases Based on Recent I
ClinicalTrials.gov study NCT07251335. IPD Sharing: NO. Countries: 1. Publications: 7.
Immunogenicity of Recombinant Vesicular Stomatitis Vaccine for Ebola-Zaire (rVSV[Delta]G-ZEBOV-GP) for Pre-Exposure Prophylaxis (PREP) in People at Potential Occupational Risk for Ebola Virus Exposure
ClinicalTrials.gov study NCT02788227. IPD Sharing: UNDECIDED. Countries: 1. Publications: 4.
Evaluation of (Doravirine / Lamivudine / Tenofovir Disoproxil Fumarate) (Delstrigo®) as a New Strategy for Non-occupational Post Exposure Prophylaxis, a Prospective Open Label Study
ClinicalTrials.gov study NCT04233372. IPD Sharing: UNDECIDED. Countries: 2. Publications: 1.
Occupational exposure to silica and risk of heart disease: a systematic review with meta-analysis
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Health Effects of Occupational Exposure to Combustion Particles - a Study on Volunteers Performing as Train Conductors
ClinicalTrials.gov study NCT03104387. IPD Sharing: NO. Countries: 1. Publications: 15.
Human Study to Develop a Signature of Occupational Diesel Exhaust Exposure
ClinicalTrials.gov study NCT03234790. IPD Sharing: NO. Countries: 1. Publications: 4.
Reducing Shoulder Complaints in Employees With High Occupational Shoulder Exposures
ClinicalTrials.gov study NCT03159910. IPD Sharing: NO. Countries: 1. Publications: 14.
Occupational Exposure to Human Papilloma Virus (HPV) and Prophylactic Vaccination
ClinicalTrials.gov study NCT03350698. IPD Sharing: NO. Countries: 1. Publications: 11.
A Prospective Cohort Study of Occupational Exposures and Cancer Risk Among Women
ClinicalTrials.gov study NCT00342004. IPD Sharing: Not stated. Countries: 1. Publications: 3.
Biktarvy for Non-Occupational Post-Exposure Prophylaxis (nPEP)
ClinicalTrials.gov study NCT03499483. IPD Sharing: NO. Countries: 1. Publications: 1.
Risk Profiling of the Occupational Exposure of COVID-19 to Healthcare Workers.
ClinicalTrials.gov study NCT04477213. IPD Sharing: Not stated. Countries: 1. Publications: 2.
A Case-control Study to Assess the Association Between Environmental, Domestic and Occupational Exposures and the Risk of Testicular Germ Cell Tumor
ClinicalTrials.gov study NCT02109926. IPD Sharing: Not stated. Countries: 1. Publications: 44.
The relationship between heavy metal exposure and type 2 diabetes: a large-scale retrospective cohort study using occupational health examinations
Open the record for dataset details and reuse information.
Safety and Acceptability Study of Non-occupational Prophylaxis (PEP) Following Potential Exposure to HIV
ClinicalTrials.gov study NCT01602822. IPD Sharing: NO. Countries: 1. Publications: 0.
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