Cerebral Hypoxia Clinical Trials

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Does Heat Stress Improve the Acute Metabolic and Cardiovascular Adaptations to Exercise

Status: Recruiting
Location: See location...
Intervention Type: Behavioral
Study Type: Interventional
Study Phase: Not Applicable
SUMMARY

Life in space is completely void of physical and environmental stress. It is well known that living things need regular physical stress (e.g. exercise) to remain strong, functional and healthy. More and more research is showing that regular environmental stress, for example heat and hypoxia, can further improve physical health. Astronauts aboard the international space station (ISS) exercise for 1-2 hours every day to avoid physical deconditioning that would otherwise cause them to age rapidly in space. Although physical exercise is very effective in remedying this deconditioning, today's astronauts still have physiological changes that indicate accelerated aging. This is a cause for concern given NASA's priority to travel to mars within the next decade; a mission that will require at least double the duration in space for our astronauts. The investigators think that the complete absence of environmental stress, i.e., heat, may be contributing to the accelerated aging that occurs during spaceflight. Our study will assess the health effects of adding heat stress to exercise that could be performed in space by astronauts. The goal is to inform best practice for astronauts to avoid physical deconditioning during long-duration spaceflight. This information will also be relevant to life on earth as spaceflight is a model of inactivity here on earth. Therefore, the potential benefits of adding heat stress will likely translate to life in space and on earth.

Eligibility
Participation Requirements
Sex: All
Minimum Age: 18
Maximum Age: 50
Healthy Volunteers: t
View:

• regularly physically active as determined via ParQ+

Locations
United States
Arizona
Northern Arizona University
RECRUITING
Flagstaff
Contact Information
Primary
Travis Gibbons, PhD
travis.gibbons@nau.edu
928-523-4002
Time Frame
Start Date: 2025-03-01
Estimated Completion Date: 2026-05-21
Participants
Target number of participants: 15
Treatments
Experimental: Exercise
Participants exercise for 90 minutes trying to remain cool with fans and limited clothing.
Experimental: Heat strain
Participants exercise for 90 minutes wearing winter and rain clothes to develop heat strain.
Placebo_comparator: Control
Resting control for 90 minutes. Not allowed to exercise.
Related Therapeutic Areas
Sponsors
Leads: Northern Arizona University

This content was sourced from clinicaltrials.gov