Effects of resistance training on consecutive and non-consecutive days on hormonal, neuromuscular and morphological responses in recreationally trained men

Authors

DOI:

https://doi.org/10.1590/1980-0037.2023v25e85848

Keywords:

testosterone, body composition, Exercise

Abstract

The purpose of the present study was to investigate the effect of two recovery periods between consecutive and non-consecutive days in strength training sessions on hormonal, neuromuscular and morphological variables in recreationally trained men. Nineteen young men completed the study and were randomly divided into two groups: 24R, 24-hour recovery group (n = nine) and 72R, 72-hour recovery group (n = ten). The strength training program (TR) lasted six weeks with two serial routines, with a weekly frequency of four times. The saliva sample was collected once a week in the morning to determine salivary testosterone. The 1RM, jump against movement and body composition tests were performed in the pre- and post-training periods. As for salivary testosterone, there was no significant effect with respect to time and between groups. Both groups improved maximal strength in terms of intervention time in the barbell bench press and in the leg press 45º, not differing between groups and body composition showed significant interaction in time to body fat percentage ∆% = -14.6 ± 10.0 (24R) and -17.2 ± 10.9 (72R); p = 0.00, fat mass ∆% = -13, 7 ± 9.2 (24R) and -18.2 ± 13.0 (72R); p = 0.00 and fat-free mass ∆% = 3.5 ± 2.7 (24R) and 2.5 ± 2 .8 (72R), p = 0.00. The recovery periods 24 and 72 hours between sessions induced similar responses in the parameters investigated in recreationally strength-trained men.

References

Bird SP, Tarpenning KM, Marino FE. Designing resistance training programmes to enhance muscular fitness: a review of the acute programme variables. Sports Med. 2005;35(10):841-51. doi: 10.2165/00007256-200535100-00002. PMID: 16180944.

American College of Sports Medicine. Progression models in resistance training for healthy adults. Med Sci Sports Exerc. 2009;41(3):687-708.

Jentjens R, Jeukendrup A. Determinants of post-exercise glycogen synthesis during short-term recovery. Sports Med. 2003;33(2):117-44. doi: 10.2165/00007256-200333020-00004. PMID: 12617691.

Charge SB, Rudnicki MA. Cellular and Molecular Regulation of Muscle Regeneration. Physiol Rev • Vol 84 • January 2004 • https://doi.org/10.1152/physrev.00019.2003 .

Platanov VN, Bulatova MM. A preparação física [physical preparation]. Rio de Janeiro: Sprint; 2003.

Radaelli R, Bottaro M, Wilhelm EM, Wagner DR, Pinto RS. Time Course of Strength and Echo Intensity Recovery After Resistance Exercise in Women, Journal of Strength and Conditioning Research: September 2012 - Volume 26 - Issue 9 - p 2577-2584 doi: 10.1519/JSC.0b013e31823dae96

Falvo MJ, Schilling BK, Bloomer RJ, Smith WA. Repeated bout effect is absent in resistance trained men: an electromyographic analysis. Journal of Electromyography and Kinesiology: Official Journal of the International Society of Electrophysiological Kinesiology. 2009 Dec;19(6):e529-35. DOI: 10.1016/j.jelekin.2008.10.010. PMID: 19059793; PMCID: PMC2783719.

Häkkinen K. Neuromuscular fatigue and recovery in male and female athletes during heavy resistance exercise. Int J Sports Med. 1993 Feb;14(2):53-9. doi: 10.1055/s-2007-1021146. PMID: 8463025.

Lopes CR, Crisp AH, Sindorf MAG, Germano MD, Lutgens LG, Nardin CA, et al. Efeito do intervalo entre sessões de exercício de força sobre o desempenho neuromuscular. Revista Brasileira de Medicina do Esporte [online]. 2014, v. 20, n. 5 [Acessado 1 Outubro 2021], pp. 402-405. Disponível em: <https://doi.org/10.1590/1517-86922014200501808>.

Carvalho A, Santos J. Nonconsecutive versus consecutive-day resistance training in recreationally trained subjects. The Journal of sports medicine and physical fitness. 2016. 58. 10.23736/S0022-4707.16.06660-3.

Santos Junior ER et al. Classification and Determination Model of Resistance Training Status, The Journal of Strength and Conditioning Research. Volume 43 - Issue 5 - p 77-86, 2021.

Marchetti, PH, Arruda, CC, Segamarchi, LF, Soares EG, Ito DT, Da Luz Junior, DA, et al. Bench press exercise: a brief review in the biomechanical aspects. Brazilian Journal of Sports and Exercise Research, v.1, n. 2, p. 135-142, jul. 2010.

Jackson AS, Pollock ML. Generalized equations for predicting body density of men. Br J Nutr. 1978 Nov; 40(3): 497-504. doi: 10.1079/bjn19780152. PMID: 718832.

Siri WE. Body composition from fluid spaces and density: analysis of methods. 1961. Nutrition. 1993 Sep-Oct;9(5):480-91; discussion 480, 492. PMID: 8286893.

Drinkwater EJ, Lawton TW, Lindsell RP, Pyne DB, Hunt PH, McKenna MJ. Training leading to repetition failure enhances bench press strength gains in elite junior athletes, Journal of strength and conditioning research: may 2005 - volume 19 - issue 2 - p 382-388.

Rooney JK, Herbert DR, Balnave JR. Fatigue contributes to the strength training stimulus. Medicine and science in sports and exercise, v. 26, n. 9, p. 1160–1164, 1994. Disponível em: <https://insights.ovid.com/pubmed?pmid=7808251>.

Schoenfeld BJ, Peterson MD, Ogborn D, Contreras B, Sonmez GT. Effects of low- vs. high-load resistance training on muscle strentgh and hipertrophy in well-trainade men. Journal of Strength and 86 Conditioning Research, v. 29, n. 10, p. 2954–2963, 2015b. Disponível em: <https://journals.lww.com/nscajscr/Fulltext/2015/10000/Effects_of_Low_vs_High_Load_Resistance_Training.36.aspx>.

Rhea MR, Alvar BA, Burkett LN, Ball SD. A Meta-analysis to Determine the Dose Response for Strength Development. Medicine & Science in Sports & Exercise, v. 35, n. 3, p. 456–464, mar. 2003.

De Souza RW, Aguiar AF, Carani FR. High-intensity resistance training with insufficient recovery time between bouts induce atrophy and alterations in myosin heavy chain content in rat skeletal muscle. Anat Rec (Hoboken). 2011 Aug;294(8):1393-400. doi: 10.1002/ar.21428. Epub 2011 Jun 28. PMID: 21714108.

Charro MA, Aoki MS, Coutts AJ, Araújo RC, Bacurau RF. Hormonal, metabolic and perceptual responses to different resistance training systems. J Sports Med Phys Fitness. 2010 Jun;50(2):229-34. PMID: 20585303.

Leite RD, Prestes J, Rosa C. Acute effect of resistance training volume on hormonal responses in trained men. J Sports Med Phys Fitness. 2011 Jun;51(2):322-8. PMID: 21681169.

Uchida, MC, Crewther, BT, Ugrinowitsch, C, Bacurau RF, Moriscot AS, Aoki MS. Hormonal responses to different resistance exercise schemes of similar total volume. J Strength Cond Res. 2009 Oct;23(7):2003-8. doi: 10.1519/JSC.0b013e3181b73bf7. PMID: 19855324.

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Published

2024-03-01