Environmental Temperatures for Work of Breathing
What You Need to Know Before You Apply
What is the purpose of this trial?
This trial explores how different temperatures affect breathing and thinking when increased breathing effort is required, such as when using certain military equipment. Participants will breathe through a device that restricts airflow while experiencing normal, hot, and cold temperatures. This exposure to varying temperatures is called "Thermal Stress Exposure." The goal is to determine if temperature changes impact breathing or cognitive clarity. Ideal candidates for the trial exercise intensely for at least 120 minutes weekly, have normal lung and cognitive function, and have no history of smoking or specific health conditions. As an unphased trial, this study allows participants to contribute to foundational research that could enhance safety and performance in challenging environments.
Will I have to stop taking my current medications?
Yes, you will need to stop taking certain medications, including selective serotonin reuptake inhibitors, stimulant medication, antibiotics, and chronic pain medications like Aleve and Tylenol, to participate in this trial.
What prior data suggests that thermal stress exposure is safe for participants?
Research shows that extreme temperatures can affect the body, particularly breathing and overall health. Studies have found that heat can impair lung function and increase the risk of breathing problems. For instance, one study discovered that heat exposure could harm lung function. This means lungs might not work as well in hot conditions.
Heat can also lead to more serious health issues. It has been linked to increased hospital visits for breathing problems and can sometimes result in severe conditions like heat-related illnesses.
While this study examines the effects of extreme temperatures, extensive research has explored this topic. Scientists use these findings to better understand potential risks. If there are any concerns, consulting a healthcare professional before joining a trial is advisable.12345Why are researchers excited about this trial?
Researchers are excited about this trial because it explores how different environmental temperatures impact the work of breathing. Unlike typical treatments that focus on medication or devices to assist breathing, this trial investigates how thermal stress—exposure to varying temperatures—affects respiratory function. By studying the effects of cold, thermoneutral, and hot temperatures on breathing, the trial aims to uncover new insights that could lead to innovative ways to manage respiratory conditions. Understanding these interactions could pave the way for non-invasive methods to support patients with breathing difficulties.
What evidence suggests that thermal stress exposure is effective for altering breathing perception and cognitive performance?
This trial will evaluate how different environmental temperatures affect breathing and cognitive function. Research has shown that hot environments can impair both breathing and clear thinking. Studies have found that high temperatures reduce lung function and make breathing more difficult. Heat increases body temperature and heart rate, which complicates breathing. Additionally, exposure to heat has been linked to slower thinking and reduced accuracy in tasks requiring focus. These findings suggest that heat can impact both breathing and mental sharpness, especially in challenging situations. Participants in this trial will experience various temperature conditions to assess these effects.26789
Are You a Good Fit for This Trial?
This trial is for healthy adults aged 18-40 who exercise intensely at least 2 hours a week, have normal lung and cognitive function, and meet certain health criteria. People with heart, lung, kidney, nerve or metabolic diseases; smokers; those on specific medications; pregnant women; and those with irregular menstrual cycles cannot join.Inclusion Criteria
Exclusion Criteria
Timeline for a Trial Participant
Screening/Familiarization
Participants are screened for eligibility to participate in the trial
Experimental Visits
Participants complete breathing tasks under different temperature conditions (thermoneutral, heat, cold) with cognitive and physiological assessments
Follow-up
Participants are monitored for safety and effectiveness after experimental visits
What Are the Treatments Tested in This Trial?
Interventions
- Thermal Stress Exposure
Trial Overview
The study tests how different temperatures (normal, hot, cold) affect breathing effort and thinking skills when it's harder to breathe in. Participants will perform tasks under each temperature condition to see if heat or cold makes breathing feel harder or affects mental performance.
How Is the Trial Designed?
6
Treatment groups
Active Control
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Participants will complete 3 experimental visits at which they will complete a breathing task under an assigned temperature condition. The order of condition exposure will be assigned via randomization.
Find a Clinic Near You
Who Is Running the Clinical Trial?
Indiana University
Lead Sponsor
United States Department of Defense
Collaborator
Citations
A systematic review and meta-analysis of the impact ...
The meta-analyses findings show that exposure to high temperatures is associated with an elevated risk of cardiovascular morbidity and mortality, with morbidity ...
Effects of Acute Exposure to Thermal Stress on ... - PMC - NIH
Acute thermal stress induces a decrease in exercise performance via increased body temperature, HR, VE, and blood lactate levels and decreased oxygen pulse.
Association between ambient temperature and respiratory ...
Key findings. • Short- and long-term heat exposure were associated with lung function decline, with the greatest effects at higher temperatures.
Heat and health
Heat stress is a leading cause of weather-related deaths and can exacerbate underlying illnesses including cardiovascular disease, diabetes, ...
Occupational Exposure to Heat and Hot Environments
Occupational exposure to heat can result in injuries, disease, reduced productivity, and death. To address this hazard, the National Institute for Occupational ...
Occupational heat stress, heat-related effects and the ... - PMC
Heat exposure had a significant direct effect on the productivity outcomes of mining worker. This effect was moderated by barriers to adaptation strategies, ...
7.
americanprogress.org
americanprogress.org/article/extreme-heat-is-more-dangerous-for-workers-every-year/Extreme Heat Is More Dangerous for Workers Every Year
In 2022, the U.S. Bureau of Labor Statistics reported 51 fatalities due to exposure to extreme temperatures and approximately 43 of those deaths ...
Impact of Heat on Respiratory Hospitalizations among Older ...
During the 18-year study period, there were an estimated 11,710 excess respiratory hospitalizations due to heat exposure. Conclusions: Results ...
Heat Exposure Changes Lung Function, Biomarkers of Airway ...
In summary, acute heat exposure was associated with reductions in lung function and airway injury. Potential biological mechanisms may involve lung epithelial ...
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