Autoren: |
Ann
Knausenberger
Human Performance Laboratory, University of Southern Maine, USA Alex Luchini Human Performance Laboratory, University of Southern Maine, USA Christopher B. Scott Human Performance Laboratory, University of Southern Maine, USA Abigail Steitz Human Performance Laboratory, University of Southern Maine, USA |
Schlüsselbegriffe: | anaerobic energy expenditure intermittent exercise work |
Veröffentlichungsdatum der gesamten Ausgabe: | 2014 |
Seitenanzahl: | 7 (53-59) |
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6. | Scott C.B. Contribution of blood lactate to the energy expenditure of weight training. J Strength Cond Res. 2006; 20: 404–411. |
7. | Scott C.B. Combustion, respiration and intermittent exercise: a theoretical perspective on oxygen uptake and energy expenditure. Biology 2014a; 3: 255–263. |
8. | Scott C.B., Earnest C.P. Resistance exercise energy expenditure is greater with fatigue as compared to non-fatigue. J Exer Physiol online. 2011; 14: 1–10. |
9. | Scott C.B., Croteau A., Ravlo T. Energy expenditure before, during and after the bench press. J Strength Cond Res. 2009; 23: 611–618. |
10. | Steele J., Fisher J., McGuff D., Bruce-Low S., and Smith D. Resistance training to momentary muscular failure improves cardiovascular fitness in humans: a review of acute physiological responses and chronic physiological adaptations. J. Exer Physiol onlin |
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12. | Vezina J.W., Der Anian C.A., Campbell K.D., Meckes N., Ainsworth B.E. An examination of the differences between two methods of estimating energy expenditure in resistance training activities. J Strength Cond Res. 2014; 28: 1026–1031. |