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Determinants of Captan Air and Dermal Exposures among Orchard Pesticide Applicators in the Agricultural Health Study

机译:农业健康研究中果园农药施药者中卡普坦空气和皮肤暴露的决定因素

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摘要

Objectives: To identify and quantify determinants of captan exposure among 74 private orchard pesticide applicators in the Agricultural Health Study (AHS). To adjust an algorithm used for estimating pesticide exposure intensity in the AHS based on these determinants and to compare the correlation of the adjusted and unadjusted algorithms with urinary captan metabolite levels.Methods: External exposure metrics included personal air, hand rinse, and dermal patch samples collected from each applicator on 2 days in 2002–2003. A 24-h urine sample was also collected. Exposure determinants were identified for each external metric using multiple linear regression models via the NLMIXED procedure in SAS. The AHS algorithm was adjusted, consistent with the identified determinants. Mixed-effect models were used to evaluate the correlation between the adjusted and unadjusted algorithm and urinary captan metabolite levels.Results: Consistent determinants of captan exposure were a measure of application size (kilogram of captan sprayed or application method), wearing chemical-resistant (CR) gloves and/or a coverall/suit, repairing spray equipment, and product formulation. Application by airblast was associated with a 4- to 5-fold increase in exposure as compared to hand spray. Exposure reduction to the hands, right thigh, and left forearm from wearing CR gloves averaged ∼80%, to the right and left thighs and right forearm from wearing a coverall/suit by ∼70%. Applicators using wettable powder formulations had significantly higher air, thigh, and forearm exposures than those using liquid formulations. Application method weights in the AHS algorithm were adjusted to nine for airblast and two for hand spray; protective equipment reduction factors were adjusted to 0.2 (CR gloves), 0.3 (coverall/suit), and 0.1 (both).Conclusions: Adjustment of application method, CR glove, and coverall weights in the AHS algorithm based on our exposure determinant findings substantially improved the correlation between the AHS algorithm and urinary metabolite levels.
机译:目标:在农业健康研究(AHS)中,在74个私人果园农药施药者中确定和量化硫丹暴露的决定因素。要基于这些决定因素调整用于估算AHS中农药暴露强度的算法,并比较已调整和未调整算法与尿中Captan代谢产物水平的相关性。方法:外部接触指标包括个人空气,洗手液和皮肤贴剂样品在2002-2003年的2天从每个涂药器收集。还收集了24小时尿液样本。通过SAS中的NLMIXED程序,使用多个线性回归模型为每个外部指标确定了暴露决定因素。调整了AHS算法,与确定的决定因素一致。结果:用不同的模型评估了调整后的和未调整的算法与尿中卡丹代谢产物水平之间的关系。 CR)手套和/或工作服/套装,修理喷涂设备和产品配方。与手喷相比,使用气枪喷洒可使暴露量增加4至5倍。戴CR手套可使手,右大腿和左前臂的暴露量平均减少约80%,穿着工作服/西装使左右大腿和右前臂的暴露量减少约70%。使用可湿性粉剂的施药者的空气,大腿和前臂暴露量明显高于使用液体剂型的施药者。将AHS算法中的应用方法权重调整为对喷丸而言为9,对于手动喷雾而言为2;防护装备的减少系数分别调整为0.2(CR手套),0.3(工作服/西装)和0.1(两者)。结论:根据我们的接触决定因素的发现,调整AHS算法中的施用方法,CR手套和工作服重量改善了AHS算法与尿液代谢物水平之间的相关性。

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