About this trial
Recent research has suggested that increasing levels of physical activity are associated with a reduction in the independent components that contribute to total energy expenditure (such as resting metabolic rate and non-exercise movement) - this occurs to conserve energy required for physical activity where energy provision becomes scarce. There are potential deleterious health and performance consequences of a reduced energy supply to fundamental metabolic processes, putting individuals regularly undertaking high levels of physical activity, such as endurance athletes, at risk. However, this association is largely based on observational data in only moderately active populations, and it is currently unclear what role energy balance status and biological sex has on this relationship.
This research intends to address these unknowns by assessing the impact of diet-induced manipulation of energy balance (conditions of energy deficit and energy surplus) in individuals undertaking habitually high levels of physical activity on independent components of total energy expenditure (resting metabolism, exercise and non-exercise movement).
Male and female athletes conducting regular moderate-to-high training volumes will undertake a randomised crossover study with a 7-day state of energy deficit and a 7-day state of energy surplus. Participants will continue to live and train as normal, but their diet will be controlled by specific food provision over the intervention periods in order to facilitate both conditions. Independent components of energy expenditure, markers of health, metabolism and performance will be measured to allow for comparison of conditions.
Eligibility criteria
Qualifiers
Self-identified endurance-trained sport participants
Training volume: >7 hours per week endurance training
Training frequency: at least 5 days per week
Disqualifiers
Diagnosis of Relative Energy Deficiency in Sport (REDs)
Active eating disorder (EDE-Q)
Active flare of a chronic disease (e.g. inflammatory bowel disease)
Type 1 or 2 diabetes mellitus
Trial design
Treatments tested in this trial
- Controlled energy-deficit diet
- Habitual diet with surplus snacks
Treatment groups
Sponsors and collaborators
University of Bath
Lead sponsor
Royal Centre for Defence Medicine
Collaborator