No effect of repeated post-resistance exercise cold or hot water immersion on in-season body composition and performance responses in academy rugby players: a randomised controlled cross-over design.

Barry G Horgan, Shona L Halson, Eric J Drinkwater, Nicholas P West, Nicolin Tee, Rebekah D Alcock, Dale W Chapman, G Gregory Haff

Journal: European journal of applied physiology 2023;123(2):351-359

PMID: 36284024

Abstract

PURPOSE

Following resistance exercise, uncertainty exists as to whether the regular application of cold water immersion attenuates lean muscle mass increases in athletes. The effects of repeated post-resistance exercise cold versus hot water immersion on body composition and neuromuscular jump performance responses in athletes were investigated.

METHODS

Male, academy Super Rugby players (n = 18, 19.9 ± 1.5 y, 1.85 ± 0.06 m, 98.3 ± 10.7 kg) participated in a 12-week (4-week × 3-intervention, i.e., control [CON], cold [CWI] or hot [HWI] water immersion) resistance exercise programme, utilising a randomised cross-over pre-post-design. Body composition measures were collected using dual-energy X-ray absorptiometry prior to commencement and every fourth week thereafter. Neuromuscular squat (SJ) and counter-movement jump (CMJ) performance were measured weekly. Linear mixed-effects models were used to analyse main (treatment, time) and interaction effects.

RESULTS

There were no changes in lean (p = 0.960) nor fat mass (p = 0.801) between interventions. CON (p = 0.004) and CWI (p = 0.003) increased (g = 0.08-0.19) SJ height, compared to HWI. There were no changes in CMJ height (p = 0.482) between interventions.

CONCLUSION

Repeated post-resistance exercise whole-body CWI or HWI does not attenuate (nor promote) increases in lean muscle mass in athletes. Post-resistance exercise CON or CWI results in trivial increases in SJ height, compared to HWI. During an in-season competition phase, our data support the continued use of post-resistance exercise whole-body CWI by athletes as a recovery strategy which does not attenuate body composition increases in lean muscle mass, while promoting trivial increases in neuromuscular concentric-only squat jump performance.

© 2022. The Author(s).

Address: Australian Institute of Sport (AIS), Australian Sports Commission, Bruce, ACT, Australia. [email protected].; School of Medical and Health Sciences, Human Performance Centre, Edith Cowan University (ECU), Joondalup, WA, Australia. [email protected].; Brumbies Rugby, Bruce, ACT, Australia. [email protected].; Australian Institute of Sport (AIS), Australian Sports Commission, Bruce, ACT, Australia.; Australian Catholic University, Banyo, QLD, Australia.; School of Medical and Health Sciences, Human Performance Centre, Edith Cowan University (ECU), Joondalup, WA, Australia.; Centre for Sport Research, School of Exercise & Nutrition Sciences, Deakin University, Geelong, VIC, Australia.; School of Medical Science and Menzies Health Institute QLD, Griffith University, Brisbane, QLD, Australia.; Australian Catholic University, Watson, ACT, 2602, Australia.; Brumbies Rugby, Bruce, ACT, Australia.; Melbourne Football Club, Melbourne, VIC, Australia.; Curtin University, Bentley, WA, 6102, Australia.; Directorate of Psychology and Sport, University of Salford, Salford, Greater Manchester, UK.
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