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《面对面:3D 打印口罩作为 N95 呼吸器的经济有效且可重复使用的替代品:一项可行性研究》。

Face Off: 3D-Printed Masks as a Cost-Effective and Reusable Alternative to N95 Respirators: A Feasibility Study.

机构信息

Pennsylvania State University College of Medicine, Hershey, Penn.

University of Miami Miller School of Medicine, Miami, Fla.

出版信息

Am J Med. 2022 Sep;135(9):1109-1115. doi: 10.1016/j.amjmed.2022.04.026. Epub 2022 May 14.

Abstract

BACKGROUND

One of the best methods for protection against respiratory diseases is the use of an N95 mask. Supply shortages have demonstrated a significant need for effective alternatives to N95 masks. Benefits of 3D-printed respirators over N95s include reduced cost and ease of production, widespread availability, reusability/sterilizability, and customizability. 3D-printed mask designs have been downloaded thousands of times; however, there is little to no data on the efficacy of these potential alternatives.

METHODS

Three of the most popular 3D-printed respirator designs were modified to allow for the Occupational Safety and Health Administration (OSHA) quantitative fit testing that disperses saline into the ambient air and determines concentrations within the mask during multiple trials. Five volunteers conducted standardized fit tests of these masks, as well as an N95 and a KN95, and the results were compared.

RESULTS

One of the 3D-printed respirators, low poly COVID-19 face mask respirator (mask 2), achieved a fit factor greater than 100 in every trial, representing sufficient fit according to OSHA protocols. The N95 mask achieved a sufficient fit in 60% of the trials, and none of the remaining masks provided a suitable fit factor reliably according to the OSHA fit test. Further trials showed no change in fit factor when different 3D-printable plastics are used or when a widely available high efficiency particulate air (HEPA) filter was used.

CONCLUSION

3D-printed respirators provide a possible alternative to N95 masks to protect against respiratory pathogens such as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Fit testing results demonstrate that certain 3D-printed mask designs may exceed the fit of N95 masks.

摘要

背景

预防呼吸道疾病的最佳方法之一是使用 N95 口罩。供应短缺表明,急需寻找 N95 口罩的有效替代品。3D 打印呼吸器相对于 N95 的优势包括成本降低和易于生产、广泛可用性、可重复使用/可消毒性以及可定制性。已经下载了数千次 3D 打印口罩设计;然而,这些潜在替代品的功效数据却很少。

方法

对三种最受欢迎的 3D 打印呼吸器设计进行了修改,以允许职业安全与健康管理局 (OSHA) 进行定量拟合测试,该测试将生理盐水分散到环境空气中,并在多次试验中确定口罩内的浓度。五名志愿者对这些口罩进行了标准化的拟合测试,以及对 N95 和 KN95 口罩进行了测试,并比较了结果。

结果

3D 打印呼吸器中的一种,低多边形 COVID-19 面罩呼吸器(面罩 2),在每次试验中都实现了大于 100 的拟合因子,根据 OSHA 协议表示足够的拟合。N95 口罩在 60%的试验中达到了足够的拟合,其余口罩都没有根据 OSHA 拟合测试可靠地提供合适的拟合因子。进一步的试验表明,当使用不同的 3D 可打印塑料或使用广泛可用的高效微粒空气 (HEPA) 过滤器时,拟合因子没有变化。

结论

3D 打印呼吸器为 N95 口罩提供了一种可能的替代品,可用于预防呼吸道病原体,如严重急性呼吸综合征冠状病毒 2 (SARS-CoV-2)。拟合测试结果表明,某些 3D 打印口罩设计可能超过 N95 口罩的拟合度。

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