Recovery of Naturally Occurring Human Borne Microbial Contamination from Settle Plates Exposed in a Unidirectional Airflow Workstation for 4 Hours

T. Eaton, Karen Capper, C. Barnett, J. Bright
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Abstract

The ability of irradiated 90 mm diameter tryptone soya agar settle plates, exposed for 4 hours in a unidirectional airflow (UDAF) workstation to recover microbial contamination, was investigated. The investigation was completed by direct contamination of numerous plates with naturally occurring microbe-carrying particles (MCPs) dispersed from a person within an enclosed environment. Half of these plates were subsequently exposed in a UDAF workstation for 4 hours and then incubated. The other half, contaminated with a similar number of MCPs, were not exposed in the workstation and provided the controls. Investigation of the reduction of plate weight during exposure was also completed to help understand the influence of plate media water content to any loss of microbial recovery. Following incubation, the numbers of recovered micro-organisms were compared and it was determined that the average number of recovered test plate colonies was reduced by 8.7% compared to the control plates and the exposure of the plates to UDAF for 4 hours reduced the plate weight, associated with loss of the media water, by an average of 12.3%. It was concluded that the ability of the plates to recover micro-organisms, following a 4 hour exposure to UDAF, was not significantly reduced. Key words: Microbiological settle plate desiccation, media dehydration, unidirectional airflow (UDAF), 4 hour exposure, microbe-carrying particles (MCPs), environmental monitoring, settle plate sampling.
从在单向气流工作站中暴露4小时的沉淀板中自然产生的人类传播的微生物污染的恢复
研究了90 mm直径的色氨酸大豆琼脂沉降板在单向气流(UDAF)工作站中暴露4小时后恢复微生物污染的能力。该调查是通过在封闭环境中直接污染从人身上分散的自然存在的携带微生物颗粒(MCPs)的许多板来完成的。其中一半板随后在UDAF工作站中暴露4小时,然后孵育。另一半被相同数量的mcp污染,没有暴露在工作站上,而是提供了控制。还完成了暴露期间平板重量减少的调查,以帮助了解平板介质含水量对微生物恢复损失的影响。孵育后,比较回收的微生物数量,确定与对照板相比,回收的测试板菌落的平均数量减少了8.7%,并且将板暴露于UDAF 4小时后,与培养基水损失相关的板重平均减少了12.3%。结论是,暴露于UDAF 4小时后,板恢复微生物的能力没有显着降低。关键词:微生物沉降板干燥,介质脱水,单向气流(UDAF), 4小时暴露,微生物携带颗粒(MCPs),环境监测,沉降板采样
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