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Erschienen in: European Journal of Applied Physiology 10/2017

29.06.2017 | Reply

Hypoxic dose, intensity distribution, and fatigue monitoring are paramount for “live high-train low”

verfasst von: Jacob Bejder, Nikolai Baastrup Nordsborg

Erschienen in: European Journal of Applied Physiology | Ausgabe 10/2017

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Excerpt

Potentially important points are raised by Brocherie et al. with regard to the interpretation of our recently published findings, including that normobaric live high-train low (LHTL) does not increase time trial performance above the 3% detection limit. We address the raised concerns below. …
Literatur
Zurück zum Zitat Brugniaux JV, Schmitt L, Robach P, Jeanvoine H, Zimmermann H, Nicolet G, Duvallet A, Fouillot JP, Richalet JP (2006) Living high-training low: tolerance and acclimatization in elite endurance athletes. Eur J Appl Physiol 96:66–77CrossRefPubMed Brugniaux JV, Schmitt L, Robach P, Jeanvoine H, Zimmermann H, Nicolet G, Duvallet A, Fouillot JP, Richalet JP (2006) Living high-training low: tolerance and acclimatization in elite endurance athletes. Eur J Appl Physiol 96:66–77CrossRefPubMed
Zurück zum Zitat Chapman RF, Karlsen T, Resaland GK, Ge RL, Harber MP, Witkowski S, Stray-Gundersen J, Levine BD (2014) Defining the “dose” of altitude training: how high to live for optimal sea level performance enhancement. J Appl Physiol (1985) 116:595–603CrossRef Chapman RF, Karlsen T, Resaland GK, Ge RL, Harber MP, Witkowski S, Stray-Gundersen J, Levine BD (2014) Defining the “dose” of altitude training: how high to live for optimal sea level performance enhancement. J Appl Physiol (1985) 116:595–603CrossRef
Zurück zum Zitat Hauser A, Schmitt L, Troesch S, Saugy JJ, Cejuela-Anta R, Faiss R, Robinson N, Wehrlin JP, Millet GP (2016) Similar hemoglobin mass response in hypobaric and normobaric hypoxia in athletes. Med Sci Sports Exerc 48:734–741CrossRefPubMed Hauser A, Schmitt L, Troesch S, Saugy JJ, Cejuela-Anta R, Faiss R, Robinson N, Wehrlin JP, Millet GP (2016) Similar hemoglobin mass response in hypobaric and normobaric hypoxia in athletes. Med Sci Sports Exerc 48:734–741CrossRefPubMed
Zurück zum Zitat Siebenmann C, Robach P, Jacobs RA, Rasmussen P, Nordsborg N, Diaz V, Christ A, Olsen NV, Maggiorini M, Lundby C (2012) “Live high-train low” using normobaric hypoxia: a double-blinded, placebo-controlled study. J Appl Physiol (1985) 112:106–117CrossRef Siebenmann C, Robach P, Jacobs RA, Rasmussen P, Nordsborg N, Diaz V, Christ A, Olsen NV, Maggiorini M, Lundby C (2012) “Live high-train low” using normobaric hypoxia: a double-blinded, placebo-controlled study. J Appl Physiol (1985) 112:106–117CrossRef
Zurück zum Zitat Tonnesen E, Sylta O, Haugen TA, Hem E, Svendsen IS, Seiler S (2014) The road to gold: training and peaking characteristics in the year prior to a gold medal endurance performance. PLoS One 9:e101796CrossRef Tonnesen E, Sylta O, Haugen TA, Hem E, Svendsen IS, Seiler S (2014) The road to gold: training and peaking characteristics in the year prior to a gold medal endurance performance. PLoS One 9:e101796CrossRef
Metadaten
Titel
Hypoxic dose, intensity distribution, and fatigue monitoring are paramount for “live high-train low”
verfasst von
Jacob Bejder
Nikolai Baastrup Nordsborg
Publikationsdatum
29.06.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Applied Physiology / Ausgabe 10/2017
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-017-3665-2

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