Department of Energy, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Department of Electronics and Telecommunications, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Int J Environ Res Public Health. 2022 May 26;19(11):6491. doi: 10.3390/ijerph19116491.
This study investigates the effects of face masks on physiological and voice parameters, focusing on cyclists that perform incremental sports activity. Three healthy male subjects were monitored in a climatic chamber wearing three types of masks with different acoustic properties, breathing resistance, and air filtration performance. Masks A and B were surgical masks made of hydrophobic fabric and three layers of non-woven fabric of 100% polypropylene, respectively. Mask S was a multilayer cloth mask designed for sports activity. Mask B and Mask S behave similarly and show lower sound attenuation and sound transmission loss and lower breathing resistance than Mask A, although Mask A exhibits slightly higher filtration efficiency. Similar cheek temperatures were observed for Masks A and B, while a significantly higher temperature was measured with Mask S at incremental physical activity. No differences were found between the masks and the no-mask condition for voice monitoring. Overall, Mask B and Mask S are suitable for sports activities without adverse effects on voice production while ensuring good breathing resistance and filtration efficiency. These outcomes support choosing appropriate masks for sports activities, showing the best trade-off between breathing resistance and filtration efficiency, sound attenuation, and sound transmission loss.
本研究调查了口罩对面部生理和声音参数的影响,重点研究了进行递增式体育活动的自行车运动员。三名健康男性受试者在气候室中佩戴三种具有不同声学特性、呼吸阻力和空气过滤性能的口罩进行监测。口罩 A 和口罩 B 分别是由疏水织物和三层 100%聚丙烯无纺制成的医用口罩。口罩 S 是一种专为运动活动设计的多层布口罩。口罩 B 和口罩 S 的性能相似,与口罩 A 相比,它们的声音衰减和声音传输损失较低,呼吸阻力也较低,尽管口罩 A 的过滤效率略高。对于口罩 A 和口罩 B,观察到相似的脸颊温度,而在递增的身体活动中,口罩 S 的温度明显更高。在声音监测方面,口罩与不戴口罩的状态没有差异。总体而言,口罩 B 和口罩 S 适合进行体育活动,不会对声音产生负面影响,同时还能确保良好的呼吸阻力和过滤效率。这些结果支持选择适合体育活动的口罩,在呼吸阻力和过滤效率、声音衰减和声音传输损失之间取得最佳折衷。