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设计策略以提高生物隔离单位医护人员的安全性:从埃博拉防范中吸取经验。

Design strategies to improve healthcare worker safety in biocontainment units: learning from ebola preparedness.

机构信息

1SimTigrate Design Lab,School of Architecture,Georgia Institute of Technology,Atlanta,Georgia.

3School of Psychology,Georgia Institute of Technology,Atlanta,Georgia.

出版信息

Infect Control Hosp Epidemiol. 2018 Aug;39(8):961-967. doi: 10.1017/ice.2018.125. Epub 2018 Jun 18.

Abstract

OBJECTIVE

To identify ways that the built environment may support or disrupt safe doffing of personal protective equipment (PPE) in biocontainment units (BCU).

DESIGN

We observed interactions between healthcare workers (HCWs) and the built environment during 41 simulated PPE donning and doffing exercises.

SETTING

The BCUs of 4 Ebola treatment facilities and 1 high-fidelity BCU mockup.ParticipantsA total of 64 HCWs (41 doffing HCWs and 15 trained observers) participated in this study.

RESULTS

In each facility, we observed how the physical environment influences risky behaviors by the HCW. The environmental design impeded communication between trained observers (TOs) and HCWs because of limited window size or visual obstructions with louvers, which allowed unobserved errors. The size and configuration of the doffing area impacted HCW adherence to protocol, and lack of clear demarcation of zones resulted in HCWs inadvertently leaving the doffing area and stepping back into the contaminated areas. Lack of standard location for items resulted in equipment and supplies frequently shifting positions. Finally, different solutions for maintaining balance while removing shoe covers (ie, chair, hand grips, and step stool) had variable success. We identified the 5 key requirements that doffing areas must achieve to support safe doffing of PPE, and we developed a matrix of proposed design strategies that can be implemented to meet those requirements.

CONCLUSIONS

Simple, low-cost environmental design interventions can provide structure to support and improve HCW safety in BCUs. These interventions should be implemented in both current and future BCUs.

摘要

目的

确定建筑环境支持或破坏生物隔离单位(BCU)中个人防护装备(PPE)安全脱卸的方式。

设计

我们在 41 次模拟 PPE 穿脱练习中观察了医护人员(HCW)与建筑环境之间的相互作用。

设置

4 个埃博拉治疗设施的 BCU 和 1 个高保真度 BCU 模型。

参与者

共有 64 名 HCW(41 名脱卸 HCW 和 15 名经过培训的观察员)参与了这项研究。

结果

在每个设施中,我们观察了物理环境如何影响 HCW 的危险行为。由于窗口尺寸有限或百叶窗的视觉障碍物,环境设计阻碍了经过培训的观察员(TO)和 HCW 之间的沟通,从而导致未观察到的错误。脱卸区的大小和配置影响 HCW 对方案的遵守情况,而区域划分不明确导致 HCW 无意中离开脱卸区并重新进入污染区。缺乏物品的标准位置导致设备和用品经常移动位置。最后,去除鞋套时保持平衡的不同解决方案(即椅子、把手和台阶)的成功率各不相同。我们确定了脱卸区必须满足的 5 个关键要求,以支持 PPE 的安全脱卸,并开发了一个矩阵,提出了可以实施的设计策略,以满足这些要求。

结论

简单、低成本的环境设计干预措施可以为支持和改善 BCU 中 HCW 的安全提供结构。这些干预措施应在当前和未来的 BCU 中实施。

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