Occupational exposure monitoring of airborne respiratory viruses in outpatient medical clinics.

IF 2.1 4区 环境科学与生态学 Q2 ENGINEERING, CHEMICAL
William B Vass, Amin Shirkhani, Mohammad Washeem, Sripriya Nannu Shankar, Yuetong Zhang, Tracey L Moquin, Rebeccah L Messcher, Matthew D Jansen, James R Clugston, Matthew P Walser, Yang Yang, John A Lednicky, Z Hugh Fan, Chang-Yu Wu
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Abstract

Exposure to airborne respiratory viruses can be a health hazard in occupational settings. In this study, air sampling was conducted from January to March 2023 in two outpatient medical clinics-one primary care clinic and one clinic dedicated to the diagnosis and treatment of respiratory illnesses-for the purpose of assessing airborne respiratory virus presence. Work involved the operation of a BioSpot-VIVAS as a stationary air sampler and deployment of NIOSH BC-251 bioaerosol samplers as either stationary devices or personal air samplers worn by staff members. Results were correlated with deidentified clinical data from patient testing. Samples from seven days were analyzed for SARS-CoV-2, influenza A H1N1 and H3N2 viruses, and influenza B Victoria- and Yamagata-lineage viruses, with an overall 17.5% (17/97) positivity rate. Airborne viruses predominated in particles of aerodynamic diameters from 1-4 μm and were recovered in similar quantities from both clinics. BC-251 samplers (17.4%, 15/86) and VIVAS (18.2%, 2/11) collected detectable viruses at similar rates, but more numerous BC-251 samplers provided greater insight into virus presence across clinical spaces and job categories. 60% of samples from reception areas contained detectable virus, and exposure to significantly more virus (p = 0.0028) occurred at reception desks as compared to the "mobile" job categories of medical providers and nurses. Overall, this study provides valuable insights into the impacts of hazard mitigation controls tailored to reducing respiratory virus exposure and highlights the need for continued diligence toward exposure risk mitigation in outpatient medical clinics.

门诊部空气传播呼吸道病毒职业暴露监测
在职业环境中,接触空气传播的呼吸道病毒可能对健康造成危害。本研究于2023年1月至3月在两个门诊医疗诊所(一个初级保健诊所和一个专门诊断和治疗呼吸道疾病的诊所)进行空气采样,目的是评估空气中呼吸道病毒的存在。工作包括操作BioSpot-VIVAS™作为固定式空气采样器,并部署NIOSH BC-251生物气溶胶采样器作为固定式设备或工作人员佩戴的个人空气采样器。结果与来自患者测试的未识别临床数据相关。对7天样本进行SARS-CoV-2、甲型H1N1和H3N2流感病毒、乙型维多利亚和山形流感病毒分析,总阳性率为17.5%(17/97)。空气传播的病毒主要存在于空气动力学直径为1-4 μm的颗粒中,从两家诊所回收的病毒数量相似。BC-251采样器(17.4%,15/86)和VIVAS(18.2%, 2/11)以相似的率收集可检测的病毒,但更多的BC-251采样器可以更深入地了解临床空间和工作类别中的病毒存在情况。接待区60%的样本含有可检测到的病毒,与医疗服务提供者和护士的“流动”工作类别相比,在接待台接触到的病毒明显更多(p = 0.0028)。总的来说,这项研究为减少呼吸道病毒暴露的危害缓解控制的影响提供了有价值的见解,并强调了门诊医疗诊所继续努力降低暴露风险的必要性。
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来源期刊
Aerosol Science and Technology
Aerosol Science and Technology 环境科学-工程:化工
CiteScore
8.40
自引率
7.70%
发文量
73
审稿时长
3 months
期刊介绍: Aerosol Science and Technology publishes theoretical, numerical and experimental investigations papers that advance knowledge of aerosols and facilitate its application. Articles on either basic or applied work are suitable. Examples of topics include instrumentation for the measurement of aerosol physical, optical, chemical and biological properties; aerosol dynamics and transport phenomena; numerical modeling; charging; nucleation; nanoparticles and nanotechnology; lung deposition and health effects; filtration; and aerosol generation. Consistent with the criteria given above, papers that deal with the atmosphere, climate change, indoor and workplace environments, homeland security, pharmaceutical aerosols, combustion sources, aerosol synthesis reactors, and contamination control in semiconductor manufacturing will be considered. AST normally does not consider papers that describe routine measurements or models for aerosol air quality assessment.
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