Affiliation:
1. Academy of Visual Arts, School of Creative Arts, Hong Kong Baptist University, Hong Kong, China
Abstract
Transmission of COVID-19 occurs predominantly through respired droplets and aerosols containing the SARS-CoV-2 virus. As a solution, face masks have been used to protect against infection. Wearing face masks during indoor exercises is essential to prevent the spread of virus-containing respiratory droplets and aerosols. However, previous studies have not investigated all elements, including the users’ perceived breathability (PB) and perceived air quality (PAQ) when wearing a face mask during indoor exercises. The current study aimed to assess users’ perceived comfort (PC) of face masks based on assessment criteria of PB and PAQ during moderate to vigorous exercises, and compare them with those during normal daily activities. Data on PC, PB, and PAQ were collected from an online questionnaire survey from 104 participants doing regular moderate to vigorous exercises. Within-subjects comparison with self-controlled case series design was performed to compare PC, PB, and PAQ between wearing face masks during exercises and daily activities. Results showed that the degree of dissatisfaction with PC, PB, and PAQ while wearing face masks and performing indoor exercises is higher than when performing daily activities (p < 0.05). The significance of the study implies that masks comfortable for daily activities may not remain the same during moderate to vigorous exercises, especially during indoor exercises.
Funder
Research Committee, Hong Kong Baptist University, Hong Kong
Subject
Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health
Reference42 articles.
1. WorldOMeter (2022, November 03). Coronavirus Toll Update: Cases & Deaths by Country. Available online: https://www.worldometers.info/coronavirus/.
2. Shafaghi, A.H., Rokhsar Talabazar, F., Koşar, A., and Ghorbani, M. (2020). On the Effect of the Respiratory Droplet Generation Condition on COVID-19 Transmission. Fluids, 5.
3. The Simulation of Covid-19 Droplet Transmission with Hamiltonian Monte Carlo Method;Delina;Indo. J. Appl. Phys.,2022
4. Airborne transmission of COVID-19 virus in enclosed spaces: An overview of research methods;Zhao;Indoor Air,2022
5. Filipić, A., Fric, K., Ravnikar, M., and Kogovšek, P. (2022). Assessment of Different Experimental Setups to Determine Viral Filtration Efficiency of Face Masks. Int. J. Environ. Res. Public Health, 19.