National University of Singapore, Alice Lee Centre for Nursing Studies, Singapore.
National University of Singapore, Institute of Systems Science, Singapore.
J Nurs Scholarsh. 2022 May;54(3):345-354. doi: 10.1111/jnu.12736. Epub 2021 Nov 8.
This study aimed to investigate the application of infrared thermal imaging and adopt deep learning to detect air leakage for determining the fitness of respirators during fit-checks.
The outbreak of Covid-19 virus constitutes a public health crisis with substantial resultant morbidities and mortalities; has exerted profound impacts.
This was a prospective observational study, employing a non-probability sampling method on a convenience sample to recruit the participants and followed the Strengthening the Reporting of Observational Studies in Epidemiology statement guidelines.
The use of infrared thermal imaging identified air leakage points as a disruption to the facial thermal pattern distribution at (a) front of face; (b) right lateral of the face; (c) left lateral of the face; (d) top of the facemask with the head facing down; and (e) bottom of the facemask with the head facing up. Results also indicated that artificial intelligence tools and the proliferation of deep learning have the potential to detect the location of air leakage locations.
The use of infrared thermal imaging provides evidence of the feasibility and applicability of infrared thermal imaging techniques in detecting air leakage for individuals wearing respirators.
The use of infrared thermal technology can serve a potential role in complement fit-checking of respiratory protective devices and offers promising practical utility in determining the fitness of respirators for nurses at the frontline to protect against the air-borne viruses.
本研究旨在探讨红外热成像的应用,并采用深度学习技术检测空气泄漏,以确定密合检查中呼吸器的适配性。
新冠病毒的爆发构成了公共卫生危机,导致了大量的发病率和死亡率;产生了深远的影响。
这是一项前瞻性观察性研究,采用非概率抽样方法对方便样本进行招募,并遵循《加强观察性研究的报告流行病学声明指南》。
红外热成像可识别空气泄漏点,表现为面部热图分布的中断,具体表现在:(a)面部前方;(b)面部右侧;(c)面部左侧;(d)头朝下时口罩顶部;以及(e)头朝上时口罩底部。结果还表明,人工智能工具和深度学习的普及具有检测空气泄漏位置的潜力。
红外热成像的应用为红外热成像技术在检测佩戴呼吸器的个体的空气泄漏方面的可行性和适用性提供了证据。
红外热技术的应用可以在补充呼吸保护装置的密合检查中发挥作用,并为一线护士确定呼吸器的适配性提供有前景的实用价值,以防止空气传播的病毒。