Pijnstilling / NSAID’s
1. Krentz, J. R., Quest, B., Farthing, J. P., Quest, D. W., & Chilibeck, P. D. (2008). The effects of ibuprofen on muscle hypertrophy, strength, and soreness during resistance training. Applied Physiology, Nutrition, and Metabolism, 33(3), 470–475. https://doi.org/10.1139/H08-013
2. Weinheimer, E. M., Jemiolo, B., Carroll, C. C., Harber, M. P., Haus, J. M., Burd, N. A., … Trappe, S. W. (2007). Resistance exercise and cyclooxygenase inhibition: Implications for skeletal muscle adaptation. American Journal of Physiology – Regulatory, Integrative and Comparative Physiology, 292, R2011–R2017. https://doi.org/10.1152/ajpregu.00802.2006
3. Trappe, T. A., White, F., Lambert, C. P., Cesar, D., Hellerstein, M., & Evans, W. J. (2010). Effect of ibuprofen and acetaminophen on postexercise muscle protein synthesis. American Journal of Physiology – Endocrinology and Metabolism, 300, E551–E560. https://doi.org/10.1152/ajpendo.00675.2010
4. D’Lugos, A. C., et al. (2018). Acetaminophen alters skeletal muscle cellular responses to resistance exercise. Journal of Applied Physiology, 124, 223–231. https://doi.org/10.1152/japplphysiol.00922.2017
5. Roberts, L. A., et al. (2024). Analgesic use and recovery from exercise-induced muscle damage. European Journal of Applied Physiology. https://pubmed.ncbi.nlm.nih.gov/38383211/
6. Barlas, P., et al. (2000). Analgesic effects on delayed onset muscle soreness. British Journal of Sports Medicine, 34, 188–191.
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Koolhydraten
7. Ivy, J. L. (1998). Glycogen resynthesis after exercise: Effect of carbohydrate intake. International Journal of Sports Medicine, 19, S142–S145.
8. Cheng, A. J., et al. (2020). Carbohydrate supplementation accelerates glycogen recovery but not force recovery. Journal of Applied Physiology, 128, 108–119. https://doi.org/10.1152/japplphysiol.00612.2019
9. Margolis, L. M., et al. (2020). Protein intake influences glycogen resynthesis. Nutrients, 12, 2477. https://pmc.ncbi.nlm.nih.gov/articles/PMC7803445/
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Koude therapie
10. Roberts, L. A., et al. (2015). Cold water immersion attenuates muscle hypertrophy. Journal of Physiology, 593, 4285–4301. https://pmc.ncbi.nlm.nih.gov/articles/PMC4594298/
11. Peake, J. M., et al. (2020). Cold water immersion and muscle adaptation. Sports Medicine, 50, 1–14. https://pmc.ncbi.nlm.nih.gov/articles/PMC7339943/
12. Piñero, J., et al. (2024). Effects of cold water immersion on muscle hypertrophy: A meta-analysis. Sports Medicine. https://pmc.ncbi.nlm.nih.gov/articles/PMC11235606/
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Sauna / warmte
13. Ahokas, E. K., et al. (2023). Infrared sauna use and neuromuscular recovery. Journal of Strength and Conditioning Research. https://pubmed.ncbi.nlm.nih.gov/37398966/
14. Kim, K., et al. (2020). Heat therapy and skeletal muscle recovery. Journal of Applied Physiology, 129, 915–927. https://pmc.ncbi.nlm.nih.gov/articles/PMC7492448/
15. Ahokas, E. K., et al. (2025). Passive heat exposure and recovery: A critical review. Sports Medicine. https://pubmed.ncbi.nlm.nih.gov/41032138/
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Omega-3
16. Lv, J., et al. (2020). Effects of omega-3 fatty acids on delayed onset muscle soreness: A meta-analysis. Clinical Nutrition, 39, 2931–2938.
17. Fernández-Lázaro, D., et al. (2024). Omega-3 fatty acids and exercise recovery. Nutrients, 16, 1123. https://pmc.ncbi.nlm.nih.gov/articles/PMC11243702/
18. Therdyothin, A., et al. (2025). Omega-3 supplementation and exercise-induced muscle damage. Nutrients. https://pmc.ncbi.nlm.nih.gov/articles/PMC12044634/
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Elektrolyten
19. Shirreffs, S. M. (2011). Hydration and performance. Nutrition Reviews, 69, S40–S45.
20. Jung, A. P., et al. (2005). Electrolytes and muscle cramping. British Journal of Sports Medicine, 39, 181–185. https://pmc.ncbi.nlm.nih.gov/articles/PMC1150229/
21. Lau, W. Y., et al. (2021). Oral rehydration solution reduces cramp susceptibility. Medicine & Science in Sports & Exercise, 53, 155–162.
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Collageen
22. Shaw, G., et al. (2017). Vitamin C–enriched gelatin supplementation increases collagen synthesis. American Journal of Clinical Nutrition, 105, 136–143.
23. Lis, D. M., et al. (2022). Collagen peptides and tendon adaptation. Nutrients, 14, 373.
24. Jerger, S., et al. (2023). Specific collagen peptides increase patellar tendon hypertrophy. Nutrients, 15, 2903.
25. van Dam, R. M., et al. (2023). Hydrolyzed collagen supplementation in patellar tendinopathy. American Journal of Sports Medicine.
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