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Living Low - Training High Methods and Physiological Responses in Well-trained Swimmers

Effects of Innovative Living Low - Training High Methods on Performance and Physiological Responses in Well-trained Swimmers.

Status
Not yet recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06253039
Enrollment
36
Registered
2024-02-12
Start date
2024-02-29
Completion date
2024-06-30
Last updated
2024-02-12

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

Conditions

Hypoventilation, Normobaric Hypoxia, Normoxia

Keywords

Repeated sprint methods, Swimming performance, Training programs, V̇̇O2peak, Lactate concentration, Energetic systems, Oxygen uptake kinetics, Deoxygenation kinetics

Brief summary

To overcome the lack of knowledge regarding the impact of different living low, training high methods on swimming performance, a 4-week intervention will be carried out to determine and compare the effects of three Repeated Sprints in Hypoxia (RSH) methods with each other and with a control group. Our goal is to characterize and compare the adaptations in swimming performance and in cardiorespiratory, metabolic, and muscle oxygenation responses that can arise after a 4-week training period of RSH and RSH-voluntary hypoventilation (VHL) performed in a ski-ergometer.

Detailed description

Recently, several new living low training high (LLTH) methods involving repeated sprints in hypoxia have shown promising results, especially in team sports. However, the underlying mechanisms remain mostly unclear, as does its effectiveness in improving swimming performance. Hypoxemia can be induced by exposure to ambient hypoxia conditions, by voluntary hypoventilation at low lung volume, or by vascular occlusion (namely, blood flow restriction). Swimming performance is influenced by aerobic and anaerobic metabolism and could benefit from these different LLTH methods. This project aims to compare the effects of repeated sprint training performed with a ski-ergometer 1) in a hypoxic chamber and 2) with voluntary hypoventilation on the performance of swimmers, as well as to characterize cardiorespiratory, metabolic, and muscle oxygenation adaptations that may contribute to the improvements achieved after four weeks of each of these types of training. All groups will be evaluated before and after the supervised training period in three testing sessions in normoxia, separated by at least 24 hours within 7 days. Swimmers will perform: 1) time-trial (100 m front crawl) in the swimming pool to determine performance, V̇̇O2 peak, and lactate concentration following the test; 2) incremental test to exhaustion in the swim-ergometer to determine aerobic peak power, cardiorespiratory responses (V̇̇O2max, ventilatory thresholds), and maximal tissue deoxygenation; 3) time-trial test in the ski-ergometer (100 m) to access performance, muscle and pulmonary oxygen uptake kinetics, and the relative contribution of energetic systems. Training sessions will be performed in the ski-ergometer and consist of 4 sets of 5x6s all-out sprints with 24s and 5 min of passive rest between the sprints and sets, respectively. In all testing and training sessions, pulse oxygen saturation will be measured for safety purposes.

Interventions

* The group will endure four weeks (8 sessions) of the assigned training program in addition to the regular swimming training. * Data collection sessions: All groups will be evaluated before and after the supervised training period in three testing sessions in normoxia separated by at least 24 hours within 7 days. * Training sessions: will be performed in the ski ergometer and consist of 4 sets of 5x6s all-out sprints with 24s and 5 min of passive rest between the sprints and sets, respectively.

Sponsors

Centro de Alto Rendimento do Jamor
CollaboratorUNKNOWN
Faculdade de Motricidade Humana
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 30 Years
Healthy volunteers
Yes

Inclusion criteria

* Swimmers from both sexes; * With regular participation in National Championships; * More than five years of training experience; * No recent exposure/acclimatization to altitude; * No recent exposition to Blood Flow Restriction training.

Exclusion criteria

* athletes who had an acclimatization experience or exposure to altitude lasting more than 10 days in the last 6 months; * pregnant or postpartum women;

Design outcomes

Primary

MeasureTime frameDescription
Ventilatory thresholds and maximum oxygen consumptionBefore and after 4 weeks of supervised training periodmL/kg·min
Lactate concentrationBefore and after 4 weeks of supervised training periodmmol.L-1
Muscle oximetryBefore and after 4 weeks of supervised training periodNear-infrared spectroscopy (NIRS)
Time-trialBefore and after 4 weeks of supervised training periodseconds

Secondary

MeasureTime frameDescription
Heart rateBefore and after 4 weeks of supervised training periodbpm
Arterial oxygen saturationBefore and after 4 weeks of supervised training periodOxymetry (%)

Countries

Portugal

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026