Search Results - "Live High - Train Low"
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Hematological and performance enhancements using live high-train low in cycling, a review with meta-analysis
Torres-Pérez, J., Fernández-Peña, E., Pinedo-Jauregi, A.Published in The Journal of Sports Medicine and Physical Fitness (2026)article“…Live High - Train Low…”
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Beyond the classical "living high" paradigm in winter sports: Lessons from summer sports
Brocherie, F., Forot, J., Millet, G. P.Published in 10th International Congress on Science and Skiing, January 28 - February 1, 2025, Val di Fiemme, Italy (2025)article“…Live High - Train Low…”
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Higher energy availability may support hemoglobin mass adaptation during a 21-day period at normobaric hypoxia and normoxia in female skiers
Kettunen, O., Kuorelahti, T., Linnamo, V., Ihalainen, J. K., Mikkonen, R.Published in 10th International Congress on Science and Skiing, January 28 - February 1, 2025, Val di Fiemme, Italy (2025)article“…Live High - Train Low…”
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"Live high-train low" induced changes in hemoglobin mass and the erythropoietin-erythroferrone-hepcidin axis in female endurance athletes
Kuorelahti, T., Ihalainen, J. K., Linnamo, V., Badenhorst, C., Kettunen, O., Mikkonen, R.Published in Physiological Reports (2025)article“…Live High - Train Low…”
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The effects of live-high, train-low hyperoxic training on running and recovery heart rates in NCAA distance runners: A pilot study
Nimmo, B, Torres, M, Johnson, E C.Published in International Journal of Exercise Science Conference Proceedings (2025)article“…Live High - Train Low…”
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Physiological and performance effects of live high train low altitude training for elite endurance athletes: A narrative review
Bonato, G., Goodman, S. P. J., Lathlean, T.Published in Current Research in Physiology (2023)article“…Live High - Train Low…”
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The effects of six-gram D-aspartic acid supplementation on the testosterone, cortisol, and hematological responses of male boxers subjected to 11 days of nocturnal exposure to norm...
Ploszczyca, K., Czuba, M., Zakrzeska, A., Gajda, R.Published in Nutrients (2024)article“…Live High - Train Low…”
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Effect of hypobaric hypoxia on hematological parameters related to oxygen transport, blood volume and oxygen consumption in adolescent endurance-training athletes
Mancera-Soto, Mónica, E. M., Chamorro-Acosta L., Ramos-Caballero, D. M., Torrella, J. R., Cristancho-Mejía, E.Published in Journal of Exercise Science & Fitness (2022)article“…Live High - Train Low…”
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Hemoglobin mass and performance responses during 4 weeks of normobaric "live high-train low and high"
Kettunen, O., Leppävuori, A., Mikkonen, R., Peltonen, J. E., Nummela, A., Wikström, B., Linnamo, V.Published in Scandinavian Journal of Medicine & Science in Sports (2023)article“…Live High - Train Low…”
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"Living high-training low" for Olympic medal performance: What have we learned 25 years after implementation?
Girard, O., Levine, B. D., Chapman, R. F., Wilber, R.Published in International Journal of Sports Physiology and Performance (2023)article“…Live High - Train Low…”
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Factors affecting sea-level performance following altitude training in elite athletes
Sharma, A. P.Published in Journal of Science in Sport and Exercise (2022)article“…Live High - Train Low…”
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Hypoxic re-exposure retains hematological but not performance adaptations post-altitude training
Yan, B., Ge, X., Yu, J., Hu, Y., Girard, O.Published in European Journal of Applied Physiology (2021)article“…Live High - Train Low…”
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Hypoxic training in natural and artificial altitude
Treff, G., Sareban, M., Schmidt, W. F. J.Published in Deutsche Zeitschrift für Sportmedizin (2022)article“…Live High - Train Low…”
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"Live high-train low" using normobaric hypoxia: a double-blinded, placebo-controlled study
Siebenmann, C., Robach, P., Jacobs, R. A., Rasmussen, P., Nordsborg, N., Diaz, V., Christ, A., Olsen, N. V., Maggiorini, M., Lundby, C.Published in Journal of Applied Physiology (2012)article“…Live High - Train Low…”
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"Live high train low" hypoxic training enhances exercise performance with efficient redox homeostasis in rats' soleus muscle
Çolak, R., Agascioglu, E., Çakatay, U.Published in High Altitude Medicine & Biology (2021)article“…Live High - Train Low…”
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Live high-train low guided by daily heart rate variability in elite Nordic-skiers
Schmitt, L., Willis, S. J., Fardel, A., Coulmy, N., Millet, G. P.Published in European Journal of Applied Physiology (2018)article“…Live High - Train Low…”
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Hypoxic dose, intensity distribution, and fatigue monitoring are paramount for "live high-train low" effectiveness
Brocherie, F., Schmitt, L., Millet, G. P.Published in European Journal of Applied Physiology (2017)article“…Live High - Train Low…”
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Endurance, aerobic high-intensity, and repeated sprint cycling performance is unaffected by normobaric "Live High-Train Low": a double-blind placebo-controlled cross-over study
Bejder, J., Andersen, A. B., Buchardt, R., Larsson, T. H., Olsen, N. V., Nordsborg, N. B.Published in European Journal of Applied Physiology (2017)article“…Live High - Train Low…”
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Hypoxic dose, intensity distribution, and fatigue monitoring are paramount for "live high-train low"
Bejder, J., Nordsborg, N. B.Published in European Journal of Applied Physiology (2017)article“…Live High - Train Low…”