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Bioaerosol sampling: sampling mechanisms bioefficiency and field studies

机译:生物气溶胶采样:采样机制生物效率和现场研究

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摘要

Investigations into the suspected airborne transmission of pathogens in healthcare environments have posed a challenge to researchers for more than a century. With each pathogen demonstrating a unique response to environmental conditions and the mechanical stresses it experiences, the choice of sampling device is not obvious. Our aim was to review bioaerosol sampling, sampling equipment, and methodology. A comprehensive literature search was performed, using electronic databases to retrieve English language papers on bioaerosol sampling. The review describes the mechanisms of popular bioaerosol sampling devices such as impingers, cyclones, impactors, and filters, explaining both their strengths and weaknesses, and the consequences for microbial bioefficiency. Numerous successful studies are described that point to best practice in bioaerosol sampling, from the use of small personal samplers to monitor workers' pathogen exposure through to large static samplers collecting airborne microbes in various healthcare settings. Of primary importance is the requirement that studies should commence by determining the bioefficiency of the chosen sampler and the pathogen under investigation within laboratory conditions. From such foundations, sampling for bioaerosol material in the complexity of the field holds greater certainty of successful capture of low-concentration airborne pathogens. From the laboratory to use in the field, this review enables the investigator to make informed decisions about the choice of bioaerosol sampler and its application.
机译:在一个多世纪的时间里,对医疗环境中可疑的病原体通过空气传播的调查一直对研究人员构成挑战。由于每种病原体都表现出对环境条件及其所承受的机械应力的独特响应,因此采样设备的选择并不明显。我们的目的是审查生物气溶胶采样,采样设备和方法。进行了全面的文献检索,使用电子数据库检索了有关生物气溶胶采样的英语论文。该综述描述了流行的生物气溶胶采样设备(例如撞击器,旋风除尘器,撞击器和过滤器)的机理,并解释了它们的优缺点和对微生物生物效率的影响。描述了许多成功的研究,这些研究指出了生物气溶胶采样的最佳实践,从使用小型个人采样器监测工人的病原体暴露,到在各种医疗机构中使用大型静态采样器收集空气中的微生物。最重要的是要求研究应通过确定所选采样器和在实验室条件下进行调查的病原体的生物效率来开始。从这样的基础上,在复杂的领域中对生物气溶胶材料进行采样,具有更大的成功捕获低浓度空气传播病原体的确定性。从实验室到现场使用,这项审查使研究人员能够就生物气溶胶采样器的选择及其应用做出明智的决定。

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