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Evaluation of the spatter-reduction effectiveness and aerosol containment of eight dry-field isolation techniques

机译:评估八种干式场隔离技术的喷溅效果和气溶胶遏制

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Objective: The novel coronavirus that was first identified in Wuhan, China, in December 2019, created a pandemic that has the potential to change the paradigm of health care delivery. Of interest to the dental community is the presence of SARSCoV-2 in the saliva of the affected patients that can potentially cause transmission of COVID-19 via droplets. The highly infectious nature of the pathogen has created a sense of urgency and a need for extra caution to prevent the spread of the disease and the potential infection of patients and the entire dental team. Spatter consists of droplets up to 50 mu m in size that are effectively stopped by barriers such as gloves, masks, and gowns. Aerosols are defined as droplet particles smaller than 5 mu m that can remain airborne for extended periods and that have been reported to be significant in viral respiratory infections. In this study, aerosol represented by particulate matter with a size of 2.5 mu m (PM2.5) was measured. Method and materials: Eight dry-field isolation methods were tested in a setup that included a realistic dental manikin and a high-speed handpiece that generated air-water spray. Environmental noise generated by the suction devices, suction flow rate of each setup, and the amount of environmental spatter and aerosols, were measured. Results: The experimental setups showed significant variability in the suction flow rate, but this was not correlated to the level of sound generated. Some experimental setups caused a short-term level of noise that exceeded the NIOSH (National Institute for Occupational Safety and Health) guidelines and were close to the OSHA (Occupational Safety and Health Administration) recommended thresholds. It is also worth noting that the variability in the flow rate is not reflected in the efficacy of the experimental setups to mitigate spatter. All experimental setups, except the IsoVac system, provided statistically significantly better spatter mitigation compared to the control. All experimental setups also were efficient in mitigating aerosols compared with the positive control (P .05). Conclusion: Results indicate that spatter reduction was significantly better amongst the setups in which an additional high-volume evacuator (HVE) line was used. All setups were efficient at mitigating PM2.5) aerosols in comparison to the control. The conclusions of this study should be interpreted with caution, and additional mitigation techniques consistent with the Centers for Disease Control and Prevention recommendations must be implemented in dental practices.
机译:目的:2019年12月在武汉首次确定的新型冠状病毒创造了一个大流行,有可能改变医疗保健交付范式的潜力。牙科界的兴趣是受影响患者的唾液中的SARSCOV-2的存在,这可能会通过液滴引起Covid-19的传播。病原体的高度传染性本质创造了一种紧迫感,需要额外谨慎,以防止疾病的传播和患者和整个牙科团队的潜在感染。飞溅物由液滴组成,尺寸高达50亩,有效地被手套,面具和礼服等障碍物拦截。气溶胶定义为小于5μm的液滴颗粒,其可以在延长的时间内保持空气传播,并且据报道,在病毒性呼吸道感染中是显着的。在该研究中,测量由尺寸为2.5μm(PM2.5)的颗粒物质所代表的气溶胶。方法和材料:在设置的设置中测试了八种干式场隔离方法,包括逼真的牙科人体模型和产生空气喷雾的高速手持式。测量由抽吸装置产生的环境噪声,每个设置的吸入流量和环境溅和气溶胶的量。结果:实验设置显示出吸入流速的显着变化,但这与产生的声音水平无关。一些实验设置导致短期噪音水平超过Niosh(国家职业安全和健康研究所)指导方针,并接近OSHA(职业安全和健康管理)建议的门槛。值得注意的是,流速的可变性不会反映在实验设置以减轻飞溅的功效。除Isovac系统外,所有实验设置,与控制相比,提供了统计上显着更好的喷溅缓解。与阳性对照相比,所有实验装置也有效地减轻气溶胶(p .05)。结论:结果表明,在使用额外的大容量排除剂(HVE)线的设置中,减少速度显着更好。与对照相比,所有设置都在减轻PM2.5)气溶胶中。本研究的结论应谨慎解释,并在牙科实践中实施与疾病控制和预防建议中心一致的额外缓解技术。

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