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3D打印面罩延长器作为隔离面罩的补充以缓解耳后不适:对COVID-19大流行的一种创新性3D打印应对措施

3D printed mask extenders as a supplement to isolation masks to relieve posterior auricular discomfort: an innovative 3D printing response to the COVID-19 pandemic.

作者信息

O'Connor Zachary, Huellewig Daniel, Sithiyopasakul Peeti, Morris Jason A, Gan Connie, Ballard David H

机构信息

3D Printing Center, Barnes Jewish Hospital, St. Louis, MO, USA.

St. Louis Children's Hospital, St. Louis, MO, USA.

出版信息

3D Print Med. 2020 Sep 29;6(1):27. doi: 10.1186/s41205-020-00080-7.

Abstract

PURPOSE

Many commonly used mask designs are secured by elastic straps looping around the posterior auricular region. This constant pressure and friction against the skin may contribute to increased wearer pain, irritation, and discomfort. The purpose of this work is to report a modified 3D printed mask extender to alleviate discomfort and increase mask wearability by relieving posterior auricular pressure from isolation masks.

METHODS

Our institutional review board designated this project as non-human research and exempt. As part of resourcing 3D printing laboratories along with individual 3D printers to provide resources to healthcare workers, mask extenders were printed to relieve posterior auricular pressure from individuals wearing isolation masks. The authors modifed an existing mask extender, increasing its length with accompanying peripheral rungs for isolation mask securement. 3D printing was performed with Ultimaker S5 (Ultimaker B.V.; Geldermalsen, Netherlands) and CR-10 (Creality3D; Shenzhen, China) 3D printers using polylactic acid filaments. The author's modified extended mask extenders were printed and freely delivered to healthcare workers (physicians, nurses, technologists, and other personnel) at the authors' institution.

RESULTS

The final mask extender design was printed with the two 3D printers with a maximum 7 straps printed simultaneously on each 3D printer. Mean print times ranges from 105 min for the Ultimaker S5 printer and 150 min for the CR-10. Four hundred seventy-five mask extenders were delivered to healthcare workers at the authors' institution, with the demand far exceeding the available supply.

CONCLUSION

We offer a modification of a 3D printed mask extender design that decreases discomfort and increases the wearability of isolation mask designs with ear loops thought to relieve posterior auricular skin pressure and ability to control strap tension. The design is simple, produced with inexpensive material (polylactic acid), and have been well-received by healthcare providers at our institution.

摘要

目的

许多常用的口罩设计是通过环绕耳后区域的弹性带固定的。这种对皮肤的持续压力和摩擦可能会导致佩戴者疼痛加剧、皮肤刺激和不适。这项工作的目的是报告一种改良的3D打印口罩延长器,通过减轻隔离口罩对耳后的压力来缓解不适并提高口罩的佩戴舒适度。

方法

我们的机构审查委员会将该项目指定为非人体研究并予以豁免。作为为3D打印实验室以及个人3D打印机提供资源以向医护人员提供支持的一部分,打印了口罩延长器,以减轻佩戴隔离口罩者耳后的压力。作者对现有的口罩延长器进行了改良,增加了其长度,并带有用于固定隔离口罩的周边横档。使用聚乳酸细丝,通过Ultimaker S5(Ultimaker B.V.;荷兰海尔德兰省)和CR-10(创想三维;中国深圳)3D打印机进行3D打印。作者改良的延长口罩延长器被打印出来,并免费分发给作者所在机构的医护人员(医生、护士、技术人员和其他人员)。

结果

最终的口罩延长器设计是用这两台3D打印机打印的,每台打印机同时最多可打印7条绑带。平均打印时间,Ultimaker S5打印机为105分钟,CR-10打印机为150分钟。475个口罩延长器被分发给了作者所在机构的医护人员,需求远远超过了可用供应。

结论

我们提供了一种对3D打印口罩延长器设计的改良方案,该设计减少了不适,并提高了带有耳挂的隔离口罩设计的佩戴舒适度,据信这种设计可减轻耳后皮肤压力并能控制绑带张力。该设计简单,采用廉价材料(聚乳酸)制作,并且在我们机构受到了医护人员的好评。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3e6/7526403/ebee9fa6b491/41205_2020_80_Fig1_HTML.jpg

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