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用于床边气溶胶控制与过滤的便携式患者隔离舱的设计与体外测试。

Design and in-vitro testing of a portable patient isolation chamber for bedside aerosol containment and filtration.

作者信息

Mousavi Ehsan S, Mohammadi Nafchi Ali, DesJardins John D, LeMatty Amanda S, Falconer Robert J, Ashley Noah D, Roth Benjamin S, Moschella Phillip

机构信息

Neiri Family Department of Construction Science and Management, Clemson University, Clemson, SC, 29634, USA.

Department of Bioengineering, Clemson University, Clemson, SC, 29634, USA.

出版信息

Build Environ. 2022 Jan;207:108467. doi: 10.1016/j.buildenv.2021.108467. Epub 2021 Oct 25.

Abstract

The emergence of the SARS-CoV-2 pandemic has imposed a multitude of complications on healthcare facilities. Healthcare professionals had to develop creative solutions to deal with resource shortages and isolation spaces when caring for COVID positive patients. Among many other solutions, facilities have utilized engineering strategies to mitigate the spread of viral contamination within the hospital environment. One of the standard solutions has been the use of whole room negative pressurization (WRNP) to turn a general patient room into an infection isolation space. However, this has not always been easy due to many limitations, such as direct access to the outdoors and the availability of WRNP units. In operating rooms where a patient is likely to go through aerosol-generating procedures, other solutions must be considered because most operating rooms use positive pressure ventilation to maintain sterility. The research team has designed, built, and tested a Covering for Operations during Viral Emergency Response (COVER), a low-cost, portable isolation chamber that fits over a patient's torso on a hospital bed to contain and remove the pathogenic agents at the source (i.e., patient's mouth and nose). This study tests the performance of the COVER system under various design and performance scenarios using particle tracing techniques and compares its efficiency with WRNP units. The results show that COVER can dramatically reduce the concentration of particles within the room, while WRNP is only effective in preventing the room-induced particles from migrating to adjacent spaces.

摘要

严重急性呼吸综合征冠状病毒2(SARS-CoV-2)大流行的出现给医疗机构带来了诸多并发症。医护人员在护理新冠病毒呈阳性的患者时,不得不制定创造性的解决方案来应对资源短缺和隔离空间问题。在众多其他解决方案中,医疗机构利用工程策略来减轻医院环境中病毒污染的传播。其中一个标准解决方案是使用全室负压(WRNP),将普通病房转变为感染隔离空间。然而,由于许多限制因素,如直接通向户外的通道以及WRNP设备的可用性,这并非总是容易实现。在患者可能接受产生气溶胶操作的手术室中,必须考虑其他解决方案,因为大多数手术室使用正压通风来维持无菌状态。研究团队设计、制造并测试了一种病毒应急响应期间手术覆盖物(COVER),这是一种低成本、便携式隔离舱,可安装在医院病床患者的躯干上,从源头(即患者的口鼻)收集并清除病原体。本研究使用粒子追踪技术测试了COVER系统在各种设计和性能场景下的性能,并将其效率与WRNP设备进行了比较。结果表明,COVER可以显著降低室内颗粒浓度,而WRNP仅在防止室内产生的颗粒迁移到相邻空间方面有效。

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