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The Effects of Wearing a Face Mask During Exercise in Youth Hockey Players During COVID-19

The Effects of Wearing a Face Mask on Exercise Tolerance in Children's Hockey During the COVID-19 Pandemic

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04874766
Enrollment
26
Registered
2021-05-06
Start date
2021-05-28
Completion date
2021-08-31
Last updated
2021-10-25

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hypoxemia

Brief summary

There is concern that wearing a face mask during COVID will affect oxygen uptake, especially during intense exercise. COVID transmission is especially prevalent in sports such as hockey, where there is close contact between players and arena ventilation is poor. This study will assess the effect of wearing a surgical face mask on simulated hockey performance and blood and muscle oxygenation during cycling exercise.

Detailed description

The sport of ice hockey involves close contact between players in poorly ventilated arenas. This increases susceptibility for transmission of viruses, such as COVID-19. Face masks can reduce the risk of virus transmission; however, there is concern that wearing a face mask during exercise will reduce oxygen uptake or increase carbon dioxide re-breathing, which can result in low blood oxygen levels, reduced oxygen delivery to muscle and reduced exercise capacity. The purpose of the study is to determine the effect of wearing a surgical face mask during exercise that simulates ice hockey play on exercise performance and blood and muscle oxygenation in boys and girls. Twelve boys and twelve girls (age 9-14y) who are experienced playing hockey, will take part in this randomized cross-over study that will assess exercise performance, blood oxygenation (i.e. pulse oximetry) and muscle oxygenation (with near infrared spectroscopy) during an exercise test on a cycle ergometer with workloads and work to rest intervals that simulates hockey performance. Participants will also be tested for repeated-sprint performance on ice while wearing full hockey equipment. The conditions include no mask (a sham mask) and a surgical mask. Outcome variables include power output during the cycle ergometer testing, skating distance during the on-ice test, rating of perceived exertion, blood oxygen saturation levels, and oxygenated, deoxygenated, and total hemoglobin at the quadriceps muscle.

Interventions

OTHERWingate exercise test and on-ice testing while wearing a face mask

Power output during 2 x 20s Wingate cycle tests and total distance during an on-ice skating test while wearing a face mask

OTHERWingate exercise test and on-ice testing while wearing a sham face mask

Power output during 2 x 20s Wingate cycle tests and total distance during an on-ice skating test while wearing a face mask

Sponsors

Saskatchewan Health Research Foundation
CollaboratorOTHER
University of Saskatchewan
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Masking description

The participant will be blinded by wearing a sham mask during the no mask condition (i.e. they will wear a surgical mask with the covering for the mouth and nose cut out). The individual who will statistically analyze the data will be blinded to conditions

Eligibility

Sex/Gender
ALL
Age
9 Years to 14 Years
Healthy volunteers
Yes

Inclusion criteria

* Experience playing ice-hockey

Exclusion criteria

* Contra-indications to exercise as identified by a screening questionnaire (the Get Active Questionnaire)

Design outcomes

Primary

MeasureTime frameDescription
Change from baseline in average power outputUp to 40 secondsAverage power output in Watts during two 20 second Wingate tests

Secondary

MeasureTime frameDescription
Change from baseline in on-ice sprint testing distanceUp to 12 minutesDistance in meters covered during a repeated 20-meter sprint test that progressively increases in speed
Change from baseline in blood oxygen saturationUp to 40 minutesBlood oxygen saturation (%) determined by pulse oximetry
Change from baseline in peak power outputUp to 40 secondsPeak power output in Watts during two 20 second Wingate tests
Change from baseline in rating of perceived exertionUp to 40 minutesRating of perceived exertion on a scale of 1-10 (Modified Borg Scale), a higher score indicates a greater perceived exertion
Change from baseline in heart rateUp to 40 minutesHeart rate (beats per minute)
Change from baseline in quadriceps tissue oxygenation indexUp to 40 minutesTissue oxygenation index (oxygenated hemoglobin/total hemoglobin) as measured by near infra-red spectroscopy

Countries

Canada

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 14, 2026