Simulation-Based Rapid Development and Implementation of a Novel Barrier Enclosure for Use in COVID-19 Patients: The SplashGuard CG.

IF 1.8 Q3 CRITICAL CARE MEDICINE
Critical Care Research and Practice Pub Date : 2020-12-17 eCollection Date: 2020-01-01 DOI:10.1155/2020/3842506
Tine François, Laurence Tabone, Arielle Levy, Laurence Alix Seguin, Taher Touré, Carl Eric Aubin, Philippe Jouvet
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引用次数: 0

Abstract

Background: The current COVID-19 pandemic has resulted in over 54,800,000 SARS-CoV-2 infections worldwide with a mortality rate of around 2.5%. As observed in other airborne viral infections such as influenza and SARS-CoV-1, healthcare workers are at high risk for infection when performing aerosol-generating medical procedures (AGMP). Additionally, the threats of a global shortage of standard personal protective equipment (PPE) prompted many healthcare workers to explore alternative protective enclosures, such as the "aerosol box" invented by a Taiwanese anesthetist. Our study includes the design process of a protective barrier enclosure and its subsequent clinical implementation in the management of critically ill adults and children infected with SARS-CoV-2.

Methods and results: The barrier enclosure was designed for use in our tertiary care facility and named "SplashGuard CG" (CG for Care Givers). The device has been adapted using a multi- and interdisciplinary approach, with collaboration between physicians, respiratory therapists, nurses, and biomechanical engineers. Computer-aided design and simulation sessions throughout the entire process facilitated the rapid and safe implementation of the SplashGuard CG in different settings (intensive care unit, emergency department, and the operating room) during AGMPs such as bag-valve-mask ventilation, nasopharyngeal suctioning, intubation and extubation, and noninvasive ventilation. Indications for use and anticipatory precautions were communicated to all healthcare workers using the SplashGuard CG. The entire process was completed within one month.

Conclusion: The rapid design, development, and clinical implementation of a new barrier enclosure, the "SplashGuard CG," was feasible in this time of crisis thanks to close collaboration between medical and engineering teams and the use of recurring simulation sessions to test and improve the initial prototypes. Following this accelerated process, it is necessary to maintain team skills, monitor any undesirable effects, and evaluate and continuously improve this new device.

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基于模拟快速开发和实施用于 COVID-19 患者的新型隔离罩:SplashGuard CG.
背景:目前的 COVID-19 大流行已导致全球超过 54,800,000 人感染 SARS-CoV-2,死亡率约为 2.5%。正如在流感和 SARS-CoV-1 等其他空气传播病毒感染中观察到的那样,医护人员在执行产生气溶胶的医疗程序 (AGMP) 时面临着高感染风险。此外,全球标准个人防护设备(PPE)短缺的威胁促使许多医护人员探索替代性防护罩,如台湾麻醉师发明的 "气溶胶盒"。我们的研究包括防护屏障箱的设计过程,以及随后在治疗感染 SARS-CoV-2 的重症成人和儿童时的临床应用:该防护罩是专为我们的三级护理机构设计的,并命名为 "SplashGuard CG"(护理人员专用 CG)。在医生、呼吸治疗师、护士和生物力学工程师的通力合作下,该设备采用了跨学科的方法进行改装。计算机辅助设计和全过程模拟有助于在不同环境(重症监护室、急诊科和手术室)中快速、安全地使用 SplashGuard CG 进行 AGMP,如袋-阀-面罩通气、鼻咽吸痰、插管和拔管以及无创通气。向所有使用 SplashGuard CG 的医护人员传达了使用说明和预期预防措施。整个过程在一个月内完成:结论:由于医疗团队和工程团队之间的密切合作,并利用反复进行的模拟会议来测试和改进最初的原型,在危机时刻快速设计、开发并在临床上实施新型防护罩 "SplashGuard CG "是可行的。在这一加速过程之后,有必要保持团队技能,监测任何不良影响,并对这一新设备进行评估和持续改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Critical Care Research and Practice
Critical Care Research and Practice CRITICAL CARE MEDICINE-
CiteScore
3.60
自引率
0.00%
发文量
34
审稿时长
14 weeks
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