Chaurasia R K, Yadav U, Bhat N N, Sapra B K
Radiological Physics and Advisory Division, Bhabha Atomic Research Centre, Mumbai, India.
Homi Bhabha National Institute, Mumbai, India.
Trans Indian Natl Acad Eng. 2022;7(1):339-347. doi: 10.1007/s41403-021-00318-8. Epub 2022 Jan 29.
In the current outbreak of COVID-19, healthcare facilities are hit by a shortage of supply of Personal Protective Equipments (PPE) owing to extensive local and global demands and restrictions on their import or export. To circumvent this, trials with several indigenous materials suitable to qualify for PPEs and sterilization techniques for their reuse are being carried out. Prior to their commercialisation, it is imperative to evaluate the resistance of the PPE fabrics against penetration of synthetic blood under applied pressure, 40-300 mmHg as per test standards. Generally, two types of tests are recommended, Penetration Test and Splash Resistance Test, the former being more stringent. While the final certification of PPEs is carried out by authorised agencies, a first impression quick estimate of the choice of fabric can be made using a simple laboratory set-up. This study describes setups developed in the laboratory to carry out these tests. Evaluation of the fabrics, post-gamma irradiation, was also carried out. Microscopic examinations were performed to investigate radiation-induced structural changes in fabrics showing degraded performance. This set-up is useful for selection of fabrics and to assess the feasibility of reuse of PPEs, which is the need of the hour in this pandemic situation.
在当前新冠疫情爆发期间,由于本地和全球的大量需求以及对个人防护装备(PPE)进出口的限制,医疗保健设施面临个人防护装备供应短缺的问题。为了规避这一问题,正在对几种适合用作个人防护装备的本土材料以及使其可重复使用的灭菌技术进行试验。在将其商业化之前,必须按照测试标准评估个人防护装备织物在40 - 300毫米汞柱的外加压力下对合成血液渗透的抗性。一般来说,推荐两种测试,即渗透测试和抗飞溅测试,前者更为严格。虽然个人防护装备的最终认证由授权机构进行,但可以使用简单的实验室装置对织物的选择进行初步快速评估。本研究描述了在实验室中开发的用于进行这些测试的装置。还对伽马辐照后的织物进行了评估。进行了显微镜检查,以研究性能下降的织物中辐射引起的结构变化。这种装置有助于选择织物,并评估个人防护装备重复使用的可行性,这在当前疫情形势下是当务之急。