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  1. 1

    Effects of high intensity interval training in normobaric hypoxia on aerobic performance and exercise-induced motor performance fatigue in young biathletes

    Zebrowska, A., Sikora, M., Mikolajczyk, R., Gerasimuk, D., Thuany, M., Weiss, K., Knechtle, B., Hall, B.
    Published in Journal of Sports Science & Medicine (2025)
    “…interval method…”
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  2. 2

    Zur Bedeutung der maximalen Laktatbildungsrate in Diagnostik und Training am Beispiel Skilanglauf und Radsport (The importance of the maximum lactate formation rate in diagnostics and training using the example of cross-country skiing and cycling)

    Weishäupl, A.
    Published 2025
    “…interval method…”
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  3. 3

    The evolvement of session design from junior age to senior peak performance in world-class cross-country skiers

    Walther, J., Haugen, T., Strøm Solli, G., Tønnessen, E., Sandbakk, Ø.
    Published in International Journal of Sports Physiology and Performance (2024)
    “…interval method…”
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  4. 4

    Training session models in endurance sports: a norwegian perspective on best practice recommendations

    Tonnessen, E., Sandbakk, Ø., Sandbakk, S. B., Seiler, S., Haugen, T.
    Published in Sports Medicine (2024)
    “…interval method…”
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  5. 5

    Increasing oxygen uptake in cross-country skiers by speed variation in work intervals

    Rønnestad, B. R., Bakken, T. R., Thyli, V., Hansen, J., Ellefsen, S., Hammarstrøm, D.
    Published in International Journal of Sports Physiology and Performance (2022)
    “…interval method…”
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  6. 6

    Three km track time trial performance changes after HIIT in competitive cross-country skiers

    Winegarden, A., Lebrun, C., Passfield, L., Doyle-Baker, P.
    Published in International Journal of Kinesiology & Sports Science (2021)
    “…interval method…”
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  7. 7

    Improving utilization of maximal oxygen uptake and work economy in recreational cross-country skiers with high-intensity double-poling intervals

    Johansen, J.-M., Eriksen, S., Sunde, A., Slettemeås, Ø. B., Helgerud, J., Støren, Ø.
    Published in International Journal of Sports Physiology and Performance (2021)
    “…interval method…”
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  8. 8

    Tid for intervaller: Start med hvorfor

    Reistad, P.
    Published in Skisport (2020)
    “…interval method…”
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  9. 9

    Optimierung und Evaluation eines akzentuierten Intervalltrainings an der Geschwindigkeitsbarriere von DBS-Kaderathleten im Skilanglauf (Optimization and evaluation of an accentuated interval training at the speed barrier of selected athletes of DBS Cross-Country Skiing)

    Wank, V., Coenning, C., Ferstl, B., Heger, H., Rapp, W., Rombach, R.
    Published in BISp-Jahrbuch Forschungsförderung 2017/18 (2018)
    “…interval method…”
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  10. 10

    Metodika razvitija special'noj vynoslivosti kvalificirovannych lyžnikov-gonšcikov na osnove uceta individual'nych osobennostej fiziceskoj podgotovlennosti i trebovanij sorevnovatel... (The method of development of special endurance of qualified skiers-racers on the basis of taking into account individual features of physical readiness and requirements of competitive activity)

    Chromov, V. A., Golovacev, A. I., Tarasova, L. V., Pankov, V. A.
    Published in Vestnik sportivnoj nauki; Sports science bulletin (2018)
    “…interval method…”
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  11. 11

    Influence of interval training frequency on time-trial performance in elite endurance athletes

    Tonnessen, E., Hisdal, J., Ronnestad, B. R.
    Published in International Journal of Environmental Research and Public Health (2020)
    “…interval method…”
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  12. 12

    Nedsatt total treningsmengde, men opprettholdt mengde høyintensiv aerob intervalltrening; effekt på maksimalt oksygenopptak og prestasjon hos en skiskytter på internasjonalt nivå.... (Reduced training volume, but the same volume of high-intensity aerobic intervall training: Effect on maximum O2 uptake und performance of a biathlon athlete at international performance level. Case study)

    Kaland, C.
    Published 2019
    “…interval method…”
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  13. 13

    Increasing oxygen uptake in well-trained cross-country skiers during work intervals with a fast start

    Rønnestad, B. T., Rømer, T., Hansen, J.
    Published in International Journal of Sports Physiology and Performance (2020)
    “…interval method…”
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  14. 14

    The interval-based physiological and mechanical demands of cross-country ski training

    Haugnes, P., Kocbach, J., Luchsinger, H., Ettema, G., Sandbakk, O.
    Published in International Journal of Sports Physiology and Performance (2019)
    “…interval method…”
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  15. 15

    Science and application of high-intensity interval training: solutions to the programming puzzle

    P. Laursen, M. Buchheit
    Published 2019
    “…interval method…”
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  16. 16

    No additional benefits of block- over evenly-distributed high-intensity interval training within a polarized microcycle

    McGawley, K., Juudas, E., Kazior, Z., Ström, K., Blomstrand, E., Hansson, O., Holmberg, H. C.
    Published in Frontiers in Physiology (2017)
    “…interval method…”
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  17. 17

    Manipulation of carbohydrate availability to promote training adaptations in endurance trained individuals

    Salokannel, M.
    Published 2018
    “…interval method…”
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  18. 18

    High intensity interval training leads to greater improvements in acute heart rate recovery and anaerobic power as high volume low intensity training

    Stöggl, T. L., Björklund, G.
    Published in Frontiers in Physiology (2017)
    “…interval method…”
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  19. 19

    Roller-ski aerobic high-intensity interval training improves the VO2max and anaerobic power in cross-country skiers

    Ates, B., Cetin, E.
    Published in International Journal of Applied Exercise Physiology (2017)
    “…interval method…”
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  20. 20

    Effects of upper-body sprint-interval training on strength and endurance capacities in female cross-country skiers

    Vandbakk, K., Welde, B., Hovstein Kruken, A., Baumgart, J., Ettema, G., Karlsen, T., Sandbakk, O.
    Published in PLOS ONE (2017)
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