Skip to main content Skip to main navigation menu Skip to site footer
  • Register
  • Login
  • Menu
  • Home
  • Current
  • Archives
  • Announcements
  • About
    • About the Journal
    • Submissions
    • Editorial Team
    • Privacy Statement
    • Contact
  • Register
  • Login

Quality in Sport

The Cold Water Immersion and Cryotherapy in Post-Exercise Recovery: A Narrative
  • Home
  • /
  • The Cold Water Immersion and Cryotherapy in Post-Exercise Recovery: A Narrative
  1. Home /
  2. Archives /
  3. Vol. 66 (2026) /
  4. Medical Sciences

The Cold Water Immersion and Cryotherapy in Post-Exercise Recovery: A Narrative

Authors

  • Katarzyna Stróżna Medical Center of Postgraduate Education Professor Witold Orłowski Independent Public Clinical Hospital, Warszawa, Poland https://orcid.org/0009-0007-7614-1108
  • Olga Błażowska-Danielska Wolski Hospital, Warsaw, Poland Marcina Kasprzaka 17, 01-211 Warszawa https://orcid.org/0009-0003-6989-3062
  • Alicja Jurewicz Independent Public Health Care Institution of the Ministry of Interior and Administration in Gdańsk, Poland Kartuska 4/6, 80-104 Gdańsk https://orcid.org/0009-0002-4834-1499
  • Oliwia Gutowska Medical University of Gdańsk, Poland ul. Marii Skłodowskiej-Curie 3a, 80-210 Gdańsk https://orcid.org/0009-0000-7378-7383
  • Weronika Nowak Medical University of Gdańsk, Poland ul. Marii Skłodowskiej-Curie 3a, 80-210 Gdańsk https://orcid.org/0009-0009-4325-4602
  • Wiktoria Kostuch Medical University of Gdańsk, Poland ul. Marii Skłodowskiej-Curie 3a, 80-210 Gdańsk https://orcid.org/0009-0003-8084-0551
  • Łukasz Kowalewski University Clinical Centre, Gdańsk, Poland ul. Dębinki 7, 80-952 Gdańsk https://orcid.org/0009-0008-4005-2610
  • Amir Naziri University Clinical Centre, Gdańsk, Poland ul. Dębinki 7, 80-952 Gdańsk https://orcid.org/0009-0009-4465-1685
  • Maria Styczyńska University Clinical Centre, Gdańsk, Poland ul. Dębinki 7, 80-952 Gdańsk https://orcid.org/0009-0005-3583-1271
  • Julianna Chyl Medical University of Gdańsk, Poland https://orcid.org/0009-0003-1115-1226

DOI:

https://doi.org/10.12775/QS.2026.66.74133

Keywords

cold therapy, core muscle injury, cold exposure, cryotherapy, post-exercise recovery, atheltic performance, delayed-onset muscle soreness, hypertrophy, body recovery

Abstract

Background. Post-exercise recovery is essential for athletic performance, training adaptation, and injury prevention. Cold water immersion (CWI) and whole-body cryotherapy (WBC) are widely used recovery strategies, yet uncertainty remains regarding their optimal application and long-term effects.

Aim. To synthesise current evidence on the physiological mechanisms, recovery effects, and practical applications of CWI and WBC in athletic populations.

Material and methods. A narrative review of studies indexed in PubMed/MEDLINE, Embase, SPORTDiscus, Web of Science, and the Cochrane Library was conducted. Original studies, systematic reviews, and meta-analyses published between 2009 and 2026 were analysed.

Results. CWI (10–15 min, 10–15°C) consistently reduces delayed-onset muscle soreness (DOMS), lowers markers of muscle damage and inflammation, and improves perceived recovery. WBC (−110 to −190°C, 2–4 min) produces similar analgesic and anti-inflammatory effects and may offer greater practicality in some sporting settings. Both modalities can support short-term performance recovery during periods of intensive competition. However, repeated post-resistance exercise CWI may attenuate muscle protein synthesis and hypertrophic adaptations. Evidence regarding endurance adaptations is generally neutral and, in some cases, suggests potential benefits.

Conclusions. CWI and WBC are effective tools for acute post-exercise recovery, particularly for reducing soreness and improving recovery perception. Their long-term use should be tailored to training goals, with caution advised during hypertrophy-focused resistance training phases. Further standardised, long-term studies are required.

References

1. Banfi, G., Melegati, G., Barassi, A., d'Eril, G. M. (2009a). Effects of the whole-body cryotherapy on NTproBNP, hsCRP and troponin I in athletes. Journal of Science and Medicine in Sport, 12(6), 609–610. https://doi.org/10.1016/j.jsams.2008.06.004

2. Banfi, G., Melegati, G., Barassi, A., Dogliotti, G., d'Eril, G. M., Dugue, B., & Corsi, M. M. (2009b). Effects of whole-body cryotherapy on serum mediators of inflammation and serum muscle enzymes in athletes. Journal of Thermal Biology, 34(1), 55–59. https://doi.org/10.1016/j.jtherbio.2008.10.003

3. Broatch, J. R., Petersen, A., & Bishop, D. J. (2018). The influence of post-exercise cold-water immersion on adaptive responses to exercise: a review of the literature. Sports Medicine, 48(6), 1369–1387. https://doi.org/10.1007/s40279-018-0910-8

4. Dupuy, O., Douzi, W., Theurot, D., Bosquet, L., & Dugué, B. (2018). An evidence-based approach for choosing post-exercise recovery techniques to reduce markers of muscle damage, soreness, fatigue, and inflammation: a systematic review with meta-analysis. Frontiers in Physiology, 9, 403. https://doi.org/10.3389/fphys.2018.00403

5. Fyfe, J. J., Broatch, J. R., Trewin, A. J., Hanson, E. D., Argus, C. K., Garnham, A. P., Halson, S. L., Polman, R. C., Bishop, D. J., & Petersen, A. C. (2019). Cold water immersion attenuates anabolic signaling and skeletal muscle fiber hypertrophy, but not strength gain, following whole-body resistance training. Journal of Applied Physiology, 127(5), 1403–1418. https://doi.org/10.1152/japplphysiol.00127.2019

6. Haq, A., Ribbans, W. J., Hohenauer, E., & Baross, A. W. (2022). The comparative effect of different timings of whole body cryotherapy treatment with cold water immersion for post-exercise recovery. Frontiers in Sports and Active Living, 4, 940516. https://doi.org/10.3389/fspor.2022.940516

7. Higgins, T. R., Greene, D. A., & Baker, M. K. (2017). Effects of cold water immersion and contrast water therapy for recovery from team sport: a systematic review and meta-analysis. Journal of Strength and Conditioning Research, 31(5), 1443–1460. https://doi.org/10.1519/JSC.0000000000001559

8. Hohenauer, E., Taeymans, J., Baeyens, J. P., Clarys, P., & Clijsen, R. (2015). The effect of post-exercise cryotherapy on recovery characteristics: a systematic review and meta-analysis. PloS One, 10(9), e0139028. https://doi.org/10.1371/journal.pone.0139028

9. Ihsan, M., Watson, G., & Abbiss, C. R. (2016). What are the physiological mechanisms for post-exercise cold water immersion in the recovery from prolonged endurance and intermittent exercise? Sports Medicine, 46(8), 1095–1109. https://doi.org/10.1007/s40279-016-0483-3

10. Ihsan, M., Abbiss, C. R., & Allan, R. (2021). Adaptations to post-exercise cold water immersion: friend, foe, or futile? Frontiers in Sports and Active Living, 3, 714148. https://doi.org/10.3389/fspor.2021.714148

11. Kellmann, M., Bertollo, M., Bosquet, L., Brink, M., Coutts, A. J., Duffield, R., Erlacher, D., Halson, S. L., Hecksteden, A., Heidari, J., Kallus, K. W., Meeusen, R., Mujika, I., Robazza, C., Skorski, S., Venter, R., & Beckmann, J. (2018). Recovery and performance in sport: consensus statement. International Journal of Sports Physiology and Performance, 13(2), 240–245. https://doi.org/10.1123/ijspp.2017-0759

12. Krüger, M., de Marees, M., Dittmar, K. H., Sperlich, B., & Mester, J. (2015). Whole-body cryotherapy’s enhancement of acute recovery of running performance in well-trained athletes. International Journal of Sports Physiology and Performance, 10(5), 605–612. https://doi.org/10.1123/ijspp.2014-0392

13. Lombardi, G., Ziemann, E., & Banfi, G. (2017). Whole-body cryotherapy in athletes: from therapy to stimulation. An updated review of the literature. Frontiers in Physiology, 8, 258. https://doi.org/10.3389/fphys.2017.00258

14. Machado, A. F., Ferreira, P. H., Micheletti, J. K., de Almeida, A. C., Lemes, Í. R., Vanderlei, F. M., Netto Junior, J., & Pastre, C. M. (2016). Can water temperature and immersion time influence the effect of cold water immersion on muscle soreness? A systematic review and meta-analysis. Sports Medicine, 46(4), 503–514. https://doi.org/10.1007/s40279-015-0431-7

15. Malta, E. S., Lopes, V. H. F., Esco, M. R., & Zagatto, A. M. (2023). Repeated cold-water immersion improves autonomic cardiac modulation following five sessions of high-intensity interval exercise. European Journal of Applied Physiology, 123(9), 1939–1948. https://doi.org/10.1007/s00421-023-05205-4

16. Peake, J. M., Neubauer, O., Della Gatta, P. A., & Nosaka, K. (2017). Muscle damage and inflammation during recovery from exercise. Journal of Applied Physiology, 122(3), 559–570. https://doi.org/10.1152/japplphysiol.00971.2016

17. Piñero, A., Burke, R., Augustin, F., De Souza, E. O., Coleman, M., & Schoenfeld, B. J. (2024). Throwing cold water on muscle growth: a systematic review with meta-analysis of the effects of postexercise cold water immersion on resistance training-induced hypertrophy. European Journal of Sport Science, 24(2), 177–189. https://doi.org/10.1002/ejsc.12074

18. Roberts, L. A., Nosaka, K., Coombes, J. S., & Peake, J. M. (2014). Cold water immersion enhances recovery of submaximal muscle function after resistance exercise. American Journal of Physiology: Regulatory, Integrative and Comparative Physiology, 307(8), R998–R1008. https://doi.org/10.1152/ajpregu.00180.2014

19. Roberts, L. A., Raastad, T., Markworth, J. F., Figueiredo, V. C., Egner, I. M., Shield, A., Cameron-Smith, D., Coombes, J. S., & Peake, J. M. (2015). Post-exercise cold water immersion attenuates acute anabolic signalling and long-term adaptations in muscle to strength training. Journal of Physiology, 593(18), 4285–4301. https://doi.org/10.1113/JP270570

20. Rose, C., Edwards, K. M., Siegler, J., Graham, K., & Caillaud, C. (2017). Whole-body cryotherapy as a recovery technique after exercise: a review of the literature. International Journal of Sports Medicine, 38(14), 1049–1060. https://doi.org/10.1055/s-0043-114861

21. Rowsell, G. J., Coutts, A. J., Reaburn, P., & Hill-Haas, S. (2009). Effects of cold-water immersion on physical performance between successive matches in high-performance junior male soccer players. Journal of Sports Sciences, 27(6), 565–573. https://doi.org/10.1080/02640410802603855

22. Rowsell, G. J., Coutts, A. J., Reaburn, P., & Hill-Haas, S. (2011). Effect of post-match cold-water immersion on subsequent match running performance in junior soccer players during tournament play. Journal of Sports Sciences, 29(1), 1–6. https://doi.org/10.1080/02640414.2010.512640

23. Siqueira, A. F., Vieira, A., Bottaro, M., Ferreira-Júnior, J. B., de Toledo Nóbrega, O., Carolino de Souza, V., Marqueti, R. de C., Babault, N., & Durigan, J. L. Q. (2018). Multiple cold-water immersions attenuate muscle damage but not alter systemic inflammation and muscle function recovery: a parallel randomized controlled trial. Scientific Reports, 8, 10961. https://doi.org/10.1038/s41598-018-28942-5

24. Stephens, J. M., Halson, S., Miller, J., Slater, G. J., & Askew, C. D. (2017). Cold-water immersion for athletic recovery: one size does not fit all. International Journal of Sports Physiology and Performance, 12(1), 2–9. https://doi.org/10.1123/ijspp.2016-0095

25. Versey, N. G., Halson, S. L., & Dawson, B. T. (2013). Water immersion recovery for athletes: effect on exercise performance and practical recommendations. Sports Medicine, 43(11), 1101–1130. https://doi.org/10.1007/s40279-013-0063-8

26. Wang, H., Wang, L., & Pan, Y. (2025). Impact of different doses of cold water immersion (duration and temperature variations) on recovery from acute exercise-induced muscle damage: a network meta-analysis. Frontiers in Physiology, 16, 1525726. https://doi.org/10.3389/fphys.2025.1525726

27. Wolska, B., Domała, Ł., Kisilewicz, A., Hassanlouei, H., Makar, P., Kawczyński, A., Mleczko, E., & Chmura, J. (2023). Multiple cryosauna sessions for post-exercise recovery of delayed onset muscle soreness (DOMS): a randomized control trial. Frontiers in Physiology, 14, 1253140. https://doi.org/10.3389/fphys.2023.1253140

28. Xiao, F., Kabachkova, A. V., Jiao, L., Zhao, H., & Kapilevich, L. V. (2023). Effects of cold water immersion after exercise on fatigue recovery and exercise performance: meta-analysis. Frontiers in Physiology, 14, 1006512. https://doi.org/10.3389/fphys.2023.1006512

29. Zhang, Y., Lu, J., Sun, X., Huang, Y., & Wang, H. (2025). Whole-body cryotherapy can reduce the inflammatory response in humans: a meta-analysis based on 11 randomized controlled trials. Scientific Reports, 15, 7342. https://doi.org/10.1038/s41598-025-90396-3

30. Zhu, Y., Yang, L., Liu, T., Yao, F., Wang, Q., & Yi, Z. (2026). Effects of cold-water immersion at different body regions on post-exercise muscle damage recovery: a systematic review and meta-analysis. Frontiers in Sports and Active Living. https://doi.org/10.3389/fspor.2026.1738075

31. Peake, J. M., Roberts, L. A., Figueiredo, V. C., Egner, I., Krog, S., Aas, S. N., Suzuki, K., Markworth, J. F., Coombes, J. S., Cameron-Smith, D., & Raastad, T. (2017). The effects of cold water immersion and active recovery on inflammation and cell stress responses in human skeletal muscle after resistance exercise. Journal of Physiology, 595(3), 695–711. https://doi.org/10.1113/JP272881

32. Choo, H. C., Lee, M., Yeo, V., Poon, W., & Ihsan, M. (2022). The effect of cold water immersion on the recovery of physical performance revisited: a systematic review with meta-analysis. Journal of Sports Sciences, 40(23), 2608–2638. https://doi.org/10.1080/02640414.2023.2178872

33. Bakula, K., Nowicka, I. M., Turek, P. R., & Dybala, E. (2026). The role of cryotherapy in sports recovery: a critical review of current evidence. Quality in Sport, 54, 70230. https://doi.org/10.12775/QS.2026.54.70230

34. Bleakley, C. M., Bieuzen, F., Davison, G. W., & Costello, J. T. (2014). Whole-body cryotherapy: empirical evidence and theoretical perspectives. Open Access Journal of Sports Medicine, 5, 25–36. https://doi.org/10.2147/OAJSM.S41655

35. Doherty, R., Madigan, S. M., Nevill, A., Warrington, G., & Ellis, J. G. (2021). The sleep and recovery practices of athletes. Nutrients, 13(4), 1330. https://doi.org/10.3390/nu13041330

36. Broatch, J. R., Petersen, A., & Bishop, D. J. (2014). Postexercise cold water immersion benefits are not greater than the placebo effect. Medicine and Science in Sports and Exercise, 46(11), 2139–2147. https://doi.org/10.1249/MSS.0000000000000348

Quality in Sport

Downloads

  • PDF

Published

2026-08-08

How to Cite

1.
STRÓŻNA, Katarzyna, BŁAŻOWSKA-DANIELSKA, Olga, JUREWICZ, Alicja, GUTOWSKA, Oliwia, NOWAK, Weronika, KOSTUCH, Wiktoria, KOWALEWSKI, Łukasz, NAZIRI, Amir, STYCZYŃSKA, Maria and CHYL, Julianna. The Cold Water Immersion and Cryotherapy in Post-Exercise Recovery: A Narrative. Quality in Sport. Online. 8 August 2026. Vol. 66, p. 74133. [Accessed 9 August 2026]. DOI 10.12775/QS.2026.66.74133.
  • ISO 690
  • ACM
  • ACS
  • APA
  • ABNT
  • Chicago
  • Harvard
  • IEEE
  • MLA
  • Turabian
  • Vancouver
Download Citation
  • Endnote/Zotero/Mendeley (RIS)
  • BibTeX

Issue

Vol. 66 (2026)

Section

Medical Sciences

License

Copyright (c) 2026 Katarzyna Stróżna, Olga Błażowska-Danielska, Alicja Jurewicz, Oliwia Gutowska, Weronika Nowak, Wiktoria Kostuch, Łukasz Kowalewski, Amir Naziri, Maria Styczyńska, Julianna Chyl

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.

Stats

Number of views and downloads: 6
Number of citations: 0

Search

Search

Browse

  • Browse Author Index
  • Issue archive

User

User

Current Issue

  • Atom logo
  • RSS2 logo
  • RSS1 logo

Information

  • For Readers
  • For Authors
  • For Librarians

Newsletter

Subscribe Unsubscribe

Tags

Search using one of provided tags:

cold therapy, core muscle injury, cold exposure, cryotherapy, post-exercise recovery, atheltic performance, delayed-onset muscle soreness, hypertrophy, body recovery
Up

Akademicka Platforma Czasopism

Najlepsze czasopisma naukowe i akademickie w jednym miejscu

apcz.umk.pl

Partners

  • Akademia Ignatianum w Krakowie
  • Akademickie Towarzystwo Andragogiczne
  • Fundacja Copernicus na rzecz Rozwoju Badań Naukowych
  • Instytut Historii im. Tadeusza Manteuffla Polskiej Akademii Nauk
  • Instytut Kultur Śródziemnomorskich i Orientalnych PAN
  • Instytut Tomistyczny
  • Karmelitański Instytut Duchowości w Krakowie
  • Ministerstwo Kultury i Dziedzictwa Narodowego
  • Państwowa Akademia Nauk Stosowanych w Krośnie
  • Państwowa Akademia Nauk Stosowanych we Włocławku
  • Państwowa Wyższa Szkoła Zawodowa im. Stanisława Pigonia w Krośnie
  • Polska Fundacja Przemysłu Kosmicznego
  • Polskie Towarzystwo Ekonomiczne
  • Polskie Towarzystwo Ludoznawcze
  • Towarzystwo Miłośników Torunia
  • Towarzystwo Naukowe w Toruniu
  • Uniwersytet im. Adama Mickiewicza w Poznaniu
  • Uniwersytet Komisji Edukacji Narodowej w Krakowie
  • Uniwersytet Mikołaja Kopernika
  • Uniwersytet w Białymstoku
  • Uniwersytet Warszawski
  • Wojewódzka Biblioteka Publiczna - Książnica Kopernikańska
  • Wyższe Seminarium Duchowne w Pelplinie / Wydawnictwo Diecezjalne „Bernardinum" w Pelplinie

© 2021- Nicolaus Copernicus University Accessibility statement Shop