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Bioaerosols of subterraneotherapy chambers at salt mine health resort

机译:盐矿疗养胜地地下疗法室的生物气溶胶

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摘要

Nowadays, an inhalation of naturally generated aerosols has again become a widely practiced method of balneological treatment of various respiratory diseases. The aim of this study was to characterize the microbial aerosol of subterraneotherapy chambers at the Bochnia Salt Mine Health Resort in southern Poland. The measurements were carried out using a 6-stage Andersen impactor over a period of 1 year in both indoor (i.e., two subterranean chambers, where curative treatments took place) and outdoor air. The maximum bacterial aerosol concentrations in the chambers reached 11,688 cfu/m3. In such interiors, a high-performance method of microbial contaminant reduction need be introduced, especially when large groups of young patients are medically cured. Respecting fungal aerosol, its average indoor concentration (88 cfu/m3) was significantly lower than outdoor level (538 cfu/m3). It confirms that ventilation system provides efficient barrier against this type of biologically active propagules. Among identified micro-organisms, the most prevalent indoors were Gram-positive cocci, which constituted up to 80 % of airborne microflora. As highly adapted to the diverse environments of its human host (skin, respiratory tract), they can be easily released in high quantities into the air. The number of people introduced into such subterranean chambers should be in some way limited. The analysis of microclimate parameters revealed that temperature and relative humidity influenced significantly the level of bacterial aerosol only. Hence, a constant control of these parameters should be scrupulously superintended at this type of subterranean premises.
机译:如今,吸入天然产生的气溶胶再次成为人们广泛应用的各种呼吸道疾病的美容治疗方法。这项研究的目的是表征波兰南部波希尼亚盐矿疗养胜地地下疗法治疗室的微生物气溶胶。测量是使用6级安徒生撞击器在室内(即,两个地下室进行治疗的地方)和室外空气中进行的,为期1年。箱内最大细菌气溶胶浓度达到11,688 cfu / m 3 。在这样的室内,需要引入一种高性能的减少微生物污染物的方法,尤其是在对大量年轻患者进行医学治愈时。就真菌气雾剂而言,其室内平均浓度(88 cfu / m 3 )明显低于室外水平(538 cfu / m 3 )。它证实通风系统可有效抵抗此类生物活性繁殖体。在确定的微生物中,室内最普遍的是革兰氏阳性球菌,其占空气传播菌群的80%。由于它们高度适应人类宿主的各种环境(皮肤,呼吸道),因此可以轻松地大量释放到空气中。引入这种地下室的人数应有所限制。小气候参数分析表明,温度和相对湿度仅显着影响细菌气溶胶的水平。因此,在这类地下场所中应严格控制对这些参数的恒定控制。

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