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负压儿科重症监护病房的感染控制改进

Infection Control Improvement of a Negative-Pressurized Pediatric Intensive Care Unit.

作者信息

Wang Fujen, Permana Indra, Chaerasari Citra, Panigrahi Bivas, Rakshit Dibakar

机构信息

Department of Refrigeration, Air Conditioning and Energy Engineering, National Chin-Yi University of Technology, Taichung 411, Taiwan.

Graduate Institute of Precision Manufacturing, National Chin-Yi University of Technology, Taichung 411, Taiwan.

出版信息

Healthcare (Basel). 2021 Nov 4;9(11):1500. doi: 10.3390/healthcare9111500.

Abstract

The COVID-19 pandemic caused by the novel SARS-CoV-2 virus raises alarming concern around the healthcare facilities due to the significant increase in patient inflow. Negative-pressurized isolation rooms have been utilized in various health care facilities to isolate the patients from active community contact. Several studies have highlighted isolation rooms improvement. However, limited knowledge is available regarding the isolation room facilities for pediatric intensive care units (PICU) to accommodate more than one pediatric patient. In this aspect, this study investigates a negative-pressurized isolation facility in PICU with minimal design modifications with the possibility that it can accommodate more than one pediatric patient. The field measurement tests were conducted to ensure the design compliance of Taiwan CDC. Then, computational fluid dynamics (CFD) was further utilized to numerically evaluate the HVAC system role and the ventilation performance towards infection control. A protected air-jet curtain system with a new ventilation layout was proposed through this study to enhance the protection for both pediatric patients and medical staff. The concentration decay was monitored and recorded within 900 s to evaluate the performance. The concentration can be reduced to 504 ppm for case 1, 620 ppm for case 2, 501 ppm for case 3, and 486 ppm for case 4. In addition, the injected bioaerosol particles could be well diluted dealing with two patients presents a good performance. The results revealed that this proposed configuration could feasibly accommodate two patients with a significant contamination control to protect the medical staff and patients.

摘要

由新型严重急性呼吸综合征冠状病毒2(SARS-CoV-2)引起的2019冠状病毒病疫情,因患者流入量大幅增加,引发了医疗机构的高度关注。负压隔离病房已在各类医疗机构中使用,以将患者与社区中的活跃接触源隔离开来。多项研究强调了隔离病房的改进。然而,关于儿科重症监护病房(PICU)可容纳多名儿科患者的隔离病房设施的知识却很有限。在这方面,本研究调查了PICU中的一种负压隔离设施,其设计改动最小,并有可能容纳多名儿科患者。进行了现场测量测试,以确保符合台湾疾病控制中心的设计要求。然后,进一步利用计算流体动力学(CFD)对暖通空调(HVAC)系统在感染控制方面的作用和通风性能进行数值评估。通过本研究提出了一种带有新通风布局的防护气幕系统,以加强对儿科患者和医护人员的保护。在900秒内监测并记录浓度衰减情况,以评估性能。对于案例1,浓度可降至504 ppm,案例2为620 ppm,案例3为501 ppm,案例4为486 ppm。此外,在处理两名患者时,注入的生物气溶胶颗粒能够得到很好的稀释,表现良好。结果表明,这种提议的配置能够切实容纳两名患者,并具有显著的污染控制效果,以保护医护人员和患者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1785/8620089/39ba1529c082/healthcare-09-01500-g001.jpg

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