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Tundra lists 4 Physical Endurance clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.
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NCT07659301
Acute Effects of Post-Exercise Hyperoxia on Recovery in Cycling
This study examines whether exposition to hyperbaric oxygen after a road-race simulation can help competitive cyclists recover and perform better the following day. Hyperbaric oxygen, which involves breathing oxygen inside a pressurized chamber, is used as a recovery method in elite and professional sport. Its effectiveness, however, remains controversial: despite this widespread use, there is a lack of solid scientific evidence that a single HBO session after strenuous endurance exercise actually improves recovery, or that clarifies how the amount of oxygen exposure influences any benefit. The study includes healthy male road cyclists between 18 and 40 years of age who compete at the national level in Belgium. After completing a fatiguing cycling session, each participant is randomly assigned to one of four groups receiving different levels of oxygen exposure during recovery. Two groups breathe oxygen under increased pressure inside a chamber at either 2.5 or 1.4 atmospheres absolute. A third group breathes oxygen at normal pressure. The fourth group receives a sham condition that reproduces the treatment setting without active oxygen exposure. The study is double-blind, meaning that neither the participants nor the researchers assessing the outcomes know which condition each participant receives. The main goal is to determine whether a single session of post-exercise HBO improves next-day endurance performance, and whether higher oxygen exposure produces greater effects. The researchers also collect blood samples and physiological measurements to better understand how the body recovers.
Gender: MALE
Ages: 18 Years - 40 Years
Updated: 2026-06-22
1 state
NCT04984226
Sodium Bicarbonate and Mitochondrial Energetics in Persons With CKD
Skeletal muscle metabolic health is critical for mobility and an underrecognized target of metabolic acidosis in chronic kidney disease. Impaired muscle mitochondrial metabolism underlies poor physical endurance increasing the risk of mobility disability. The proposed project will use precise in vivo tools to study the pathophysiology of poor physical endurance in a clinical trial treating metabolic acidosis among persons living with chronic kidney disease.
Gender: All
Ages: 21 Years - 85 Years
Updated: 2026-05-06
2 states
NCT07362329
Use of Exercise Snacks to Improve Upper Body Fitness
This study will examine the effects of an upper-body resistance "exercise snack" (ES) protocol on upper-body strength, endurance, and power. Participants will be randomly assigned to one of three groups: a submaximal effort repeated throughout the exercise day ES group, a maximal effort performed once per exercise day ES group, and a control group that continues usual activity (Control: no resistance exercise). Both exercise groups will perform two exercises, push-ups and planks, three days per week. The submaximal repeated effort ES group (SMR\_ES) will perform approximately 33% of the maximal number of push-ups and maintain a plank position for 33% of maximal time, three times per day. The maximal once-per-day effort ES group (MO\_ES) will perform the maximal number of push-ups and maintain a plank position for maximal time, once per day. Therefore, both ES groups (SMR\_ES and MO\_ES) will perform the same weekly volume (repetitions and time) of both exercises across the six-week intervention period. Before and after the six-week intervention period, all participants will undergo testing to assess upper-body performance. Outcome measures will include push-up endurance (maximum repetitions), plank endurance (maximum time), push-up power (assessed using force plates), and maximal push strength (assessed using hand-held dynamometry). Pre- and post-intervention changes in outcomes will be compared among all three groups. If significant changes are identified, additional comparisons will be conducted between the SMR\_ES and Control groups, as well as between the SMR\_ES and MO\_ES groups. The primary aim of this study is to determine whether repeated submaximal efforts performed three times per day, three days per week, increase upper-body endurance, power, and strength compared to a control group performing no resistance exercise. The secondary aim is to determine whether submaximal efforts performed three times per day, three days per week, produce changes in upper-body strength, endurance, and power that are not different from maximal efforts performed once per day, three days per week. These aims address whether exercise distribution influences strength and power adaptations beyond total weekly volume. The findings may help inform time-efficient, lower subjective-effort resistance training strategies that can be implemented in educational, athletic, or general fitness settings.
Gender: All
Ages: 20 Years - 35 Years
Updated: 2026-04-09
1 state
NCT06536816
Combined Effects of Game Profile-based Training and Small-sided Games Among Football Players
Game profile-based training is a methodology in sports, including football, where training sessions are designed to simulate the specific conditions and challenges that players face during actual games. Coaches analyze individual and team performance data to identify patterns, positions, and scenarios commonly encountered in matches. The training is then structured to replicate these situations, helping players develop the skills, tactics, and decision-making abilities required in real-game scenarios.
Gender: MALE
Ages: 18 Years - 30 Years
Updated: 2024-08-05
1 state