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利用 3D 打印能力应对危机:为医疗设备快速响应的 COVID-19 分布式制造提供建议。

Leveraging 3D Printing Capacity in Times of Crisis: Recommendations for COVID-19 Distributed Manufacturing for Medical Equipment Rapid Response.

机构信息

Limbitless Solutions, University of Central Florida, 4217 E Plaza Drive, Orlando, FL 32816, USA.

Department of Sociology, University of Central Florida, 4000 Central Florida Blvd, Orlando, FL 32816, USA.

出版信息

Int J Environ Res Public Health. 2020 Jun 27;17(13):4634. doi: 10.3390/ijerph17134634.

DOI:10.3390/ijerph17134634
PMID:32605098
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7370126/
Abstract

The SARS-CoV-2 (COVID-19) pandemic has provided a unique set of global supply chain limitations with an exponentially growing surge of patients requiring care. The needs for Personal Protective Equipment (PPE) for hospital staff and doctors have been overwhelming, even just to rule out patients not infected. High demand for traditionally manufactured devices, challenged by global demand and limited production, has resulted in a call for additive manufactured (3D printed) equipment to fill the gap between traditional manufacturing cycles. This method has the unique ability to pivot in real time, while traditional manufacturing may take months to change production runs. 3D printing has been used to produce a variety of equipment for hospitals including face shields, masks, and even ventilator components to handle the surge. This type of rapid, crowd sourced, design and production resulted in new challenges for regulation, liability, and distribution. This manuscript reviews these challenges and successes of additive manufacturing and provides a forward plan for hospitals to consider for future surge events. Recommendations: To accommodate future surges, hospitals and municipalities should develop capacity for short-run custom production, enabling them to validate new designs. This will rapidly increase access to vetted equipment and critical network sharing with community distributed manufacturers and partners. Clear guidance and reviewed design repositories by regulatory authorities will streamline efforts to combat future pandemic waives or other surge events.

摘要

SARS-CoV-2(COVID-19)大流行带来了一系列独特的全球供应链限制,需要护理的患者呈指数级增长。医护人员和医生对个人防护设备(PPE)的需求巨大,即使只是排除未感染的患者,情况也是如此。传统制造设备的需求很高,受到全球需求和有限生产的挑战,因此呼吁使用增材制造(3D 打印)设备来填补传统制造周期之间的空白。这种方法具有实时调整的独特能力,而传统制造可能需要数月时间才能改变生产运行。3D 打印已被用于为医院生产各种设备,包括面罩、口罩,甚至呼吸机部件,以应对激增的需求。这种快速的、众包的设计和生产方式给监管、责任和分配带来了新的挑战。本文回顾了增材制造的这些挑战和成功,并为医院提供了应对未来激增事件的计划。建议:为了应对未来的激增,医院和市政当局应建立短期定制生产能力,使他们能够验证新设计。这将迅速增加对经过审查的设备的访问,并与社区分布式制造商和合作伙伴共享关键网络。监管机构提供的明确指导和经过审查的设计存储库将简化应对未来大流行豁免或其他激增事件的工作。

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3D Printed Face Shields: A Community Response to the COVID-19 Global Pandemic.3D打印面罩:社区对新冠疫情全球大流行的应对举措
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Applications of 3D Printing Technology to Address COVID-19-Related Supply Shortages.
PLoS One. 2024 May 14;19(5):e0303218. doi: 10.1371/journal.pone.0303218. eCollection 2024.
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The role of 3D printing during COVID-19 pandemic: a review.3D打印在新冠疫情期间的作用:综述
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Ann 3D Print Med. 2022 Mar;5:100042. doi: 10.1016/j.stlm.2021.100042. Epub 2021 Dec 13.
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