4.6 Article

Method of Medical Equipment Evaluation and Preparation for On-Demand Additive Manufacturing with the Conventional Supply Chain Being Broken: A Case Study of Mask Filter Adapter Production during COVID-19

Journal

APPLIED SCIENCES-BASEL
Volume 11, Issue 24, Pages -

Publisher

MDPI
DOI: 10.3390/app112412016

Keywords

COVID-19; additive manufacturing; mask filter adapter; SLS technology; FDM technology

Funding

  1. National Center for Research and Development in Poland [SZPITALEJEDNOIMIENNE/6/2020]

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This paper presents a method for addressing medical equipment shortages during the COVID-19 pandemic by testing and evaluating materials to manufacture adapters connecting masks with filters, thus increasing the number of available masks for medical personnel and ensuring the continuity of their work.
A year after the first cases, the COVID-19 pandemic continued to put immense pressure on healthcare systems worldwide. With supply chains broken, the only opportunity for hospitals was to turn to unconventional solutions to overcome medical equipment shortages in the shortest possible time. This paper describes the methodology that allows the preparation of medical equipment to be additionally manufactured in keeping with medical requirements. The proposed method focuses on cytotoxicity tests against HaCaT, L929, A549 cell lines, and the assessment of potential antimicrobial properties of materials. The application of the proposed method is shown by the example of an adapter that connects a full mask with widely available DAR filters. The prototyping and fabrication of adapters were conducted with the fused deposition modelling (FDM) and selective laser sintering (SLS) technologies. The adapters increased the number of masks available to medical personnel, and by the same token, ensured the continuity of their work.

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