Impact of active intra-complex rest intervals on post-back squat versus hip thrust jumping potentiation
Language English Country Great Britain, England Media electronic
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
37950054
PubMed Central
PMC10638422
DOI
10.1038/s41598-023-47042-7
PII: 10.1038/s41598-023-47042-7
Knihovny.cz E-resources
- MeSH
- Exercise MeSH
- Soccer * MeSH
- Humans MeSH
- Posture MeSH
- Athletes MeSH
- Sports * physiology MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
This study investigated the impact of active rest intervals within a lower body complex training session on post-activation performance enhancement (PAPE) response in amateur soccer players. Twelve soccer players took part in four different experimental conditions. These sessions included 2 sets of lower body complex-paired exercises, each involving 3 repetitions of either back squats or hip thrusts at 90% one-repetition maximum (1RM) as a conditioning activity paired with a broad jump and countermovement jump. Between those exercises in active intra-complex rest interval conditions, participants were performing 8 repetitions of bench press at 75%1RM or, in passive intra-complex rest interval conditions, rested while seated. A significant main effect of a set to increase broad jump length (p = 0.002), countermovement jump height (p = 0.002), and modified reactive strength index (p = 0.005) was revealed, without any significant differences between conditions. Post-hoc comparisons showed a significant increase in broad jump length from baseline to Set-2 (231 ± 13 vs. 234 ± 13 cm; p = 0.003; ES = 0.22). On the other hand, countermovement jump height and modified reactive strength index significantly increased from baseline to Set-1 (34.4 ± 3.6 vs. 35.6 ± 3.9 cm; p = 0.027; ES = 0.31 and 0.4 ± 0.05 vs. 0.45 ± 0.09; p = 0.005; ES = 0.66). Results of this study showed that to sustain a high training density, sports practitioners may incorporate upper body exercises within the intra-complex rest interval during lower limb complex training sessions and still elicit a significant PAPE effect.
See more in PubMed
Prieske O, Behrens M, Chaabene H, Granacher U, Maffiuletti NA. Time to differentiate postactivation “potentiation” from “performance enhancement” in the strength and conditioning community. Sports Med. 2020;50:1559–1565. doi: 10.1007/s40279-020-01300-0. PubMed DOI PMC
Blazevich AJ, Babault N. Post-activation potentiation versus post-activation performance enhancement in humans: Historical perspective, underlying mechanisms, and current issues. Front. Physiol. 2019;10:1359. doi: 10.3389/fphys.2019.01359. PubMed DOI PMC
Ciocca G, Tschan H, Tessitore A. Effects of post-activation performance enhancement (PAPE) induced by a plyometric protocol on deceleration performance. J. Hum. Kinet. 2021;80:5–16. doi: 10.2478/hukin-2021-0085. PubMed DOI PMC
Krzysztofik M, Wilk M. The effects of plyometric conditioning on post-activation bench press performance. J. Hum. Kinet. 2020;74:99–108. doi: 10.2478/hukin-2020-0017. PubMed DOI PMC
Berriel GP, et al. Effects of postactivation performance enhancement on the vertical jump in high-level volleyball athletes. J. Hum. Kinet. 2022;82:145–153. doi: 10.2478/hukin-2022-0041. PubMed DOI PMC
Pereira LA, et al. Post-activation performance enhancement in sprinters: Effects of hard versus sand surfaces. J. Hum. Kinet. 2022;82:173–180. doi: 10.2478/hukin-2022-0062. PubMed DOI PMC
Gołaś A, Maszczyk A, Zajac A, Mikołajec K, Stastny P. Optimizing post activation potentiation for explosive activities in competitive sports. J. Hum. Kinet. 2016;52:95–106. doi: 10.1515/hukin-2015-0197. PubMed DOI PMC
Krzysztofik M, Wilk M, Stastny P, Golas A. Post-activation performance enhancement in the bench press throw: A systematic review and meta-analysis. Front. Physiol. 2021;11:598628. doi: 10.3389/fphys.2020.598628. PubMed DOI PMC
Seitz LB, Haff GG. Factors modulating post-activation potentiation of jump, sprint, throw, and upper-body ballistic performances: A systematic review with meta-analysis. Sports Med. 2016;46:231–240. doi: 10.1007/s40279-015-0415-7. PubMed DOI
Gee TI, Harsley P, Bishop DC. Effect of 10 weeks of complex training on speed and power in academy soccer players. Int. J. Sports Physiol. Perform. 2021;16:1134–1139. doi: 10.1123/ijspp.2020-0139. PubMed DOI
Lepkowski M, Leiting KA, Koch AJ. Practical considerations and applications of postactivation performance enhancement in group training: Delayed performance enhancing triplexes. Strength Cond. J. 2021;43:62–67. doi: 10.1519/SSC.0000000000000600. DOI
Lim JJH, Barley CI. Complex training for power development: Practical applications for program design. Strength Cond. J. 2016;38:33–43. doi: 10.1519/SSC.0000000000000265. DOI
Trybulski R, et al. Post-activation performance enhancement: Save time with active intra-complex recovery intervals. Front. Physiol. 2022;13:840722. doi: 10.3389/fphys.2022.840722. PubMed DOI PMC
Cuenca-Fernández F, et al. Nonlocalized postactivation performance enhancement (PAPE) effects in trained athletes: A pilot study. Appl. Physiol. Nutr. Metab. 2017;42:1122–1125. doi: 10.1139/apnm-2017-0217. PubMed DOI
Vandenboom R. Modulation of skeletal muscle contraction by myosin phosphorylation. Compr. Physiol. 2016;7:171–212. doi: 10.1002/cphy.c150044. PubMed DOI
Bartolomei S, De Luca R, Marcora SM. May a nonlocalized postactivation performance enhancement exist between the upper and lower body in trained men? J. Strength Cond. Res. 2023;37:68–73. PubMed
Cairns SP, Borrani F. β-Adrenergic modulation of skeletal muscle contraction: Key role of excitation-contraction coupling. J. Physiol. 2015;593:4713–4727. doi: 10.1113/JP270909. PubMed DOI PMC
Atalağ O, Kurt C, Solyomvari E, Sands J, Cline C. Postactivation potentiation effects of Back Squat and Barbell Hip Thrust exercise on vertical jump and sprinting performance. J. Sports Med. Phys. Fitness. 2020 doi: 10.23736/S0022-4707.20.10888-0. PubMed DOI
Carbone L, et al. Effects of heavy barbell hip thrust vs back squat on subsequent sprint performance in rugby players. Biol. Sport. 2020;37:325–331. doi: 10.5114/biolsport.2020.96316. PubMed DOI PMC
Seitz LB, Mina MA, Haff GG. Postactivation potentiation of horizontal jump performance across multiple sets of a contrast protocol. J. Strength Cond. Res. 2016;30:2733–2740. doi: 10.1519/JSC.0000000000001383. PubMed DOI
Baker D, Newton RU. Acute effect on power output of alternating an agonist and antagonist muscle exercise during complex training. J. Strength Cond. Res. 2005;19:202–205. PubMed
Robbins DW, Young WB, Behm DG, Payne WR. The effect of a complex agonist and antagonist resistance training protocol on volume load, power output, electromyographic responses, and efficiency. J. Strength Cond. Res. 2010;24:1782–1789. doi: 10.1519/JSC.0b013e3181dc3a53. PubMed DOI
Weakley JJS, et al. The effects of traditional, superset, and tri-set resistance training structures on perceived intensity and physiological responses. Eur. J. Appl. Physiol. 2017;117:1877–1889. doi: 10.1007/s00421-017-3680-3. PubMed DOI PMC
Tsoukos A, Brown LE, Veligekas P, Terzis G, Bogdanis GC. Postactivation potentiation of bench press throw performance using velocity-based conditioning protocols with low and moderate loads. J. Hum. Kinet. 2019;68:81–98. doi: 10.2478/hukin-2019-0058. PubMed DOI PMC
Bartolomei S, Lanzoni IM, Fantozzi S, Cortesi M. A comparison between non-localized post-activation performance enhancements following resistance exercise for the upper and the lower body. Appl. Sci. 2022;12:1639. doi: 10.3390/app12031639. DOI
Scott DJ, Ditroilo M, Marshall PA. Complex training: The effect of exercise selection and training status on postactivation potentiation in rugby league players. J. Strength Cond. Res. 2017;31:2694–2703. doi: 10.1519/JSC.0000000000001722. PubMed DOI
Garbisu-Hualde A, Gutierrez L, Santos-Concejero J. Post-activation performance enhancement as a strategy to improve bench press performance to volitional failure. J. Hum. Kinet. 2023 doi: 10.5114/jhk/162958. PubMed DOI PMC
Martínez-Garciá D, et al. Effects of pre-activation with variable intra-repetition resistance on throwing velocity in female handball players: A methodological proposal. J. Hum. Kinet. 2021;77:235–244. doi: 10.2478/hukin-2021-0022. PubMed DOI PMC
Contreras B, Cronin J, Schoenfeld B. Barbell Hip Thrust. Strength Cond. J. 2011;33:58–61. doi: 10.1519/SSC.0b013e31822fa09d. DOI
Neto WK, Vieira TL, Gama EF. Barbell hip thrust, muscular activation and performance: A systematic review. J. Sports Sci. Med. 2019;18:198–206. PubMed PMC
Beardsley C, Contreras B. The increasing role of the hip extensor musculature with heavier compound lower-body movements and more explosive sport actions. Strength Cond. J. 2014;36:49–55. doi: 10.1519/SSC.0000000000000047. DOI
Kilduff LP, et al. Influence of recovery time on post-activation potentiation in professional rugby players. J. Sports Sci. 2008;26:795–802. doi: 10.1080/02640410701784517. PubMed DOI
Seitz LB, de Villarreal ES, Haff GG. The temporal profile of postactivation potentiation is related to strength level. J. Strength Cond. Res. 2014;28:706–715. doi: 10.1519/JSC.0b013e3182a73ea3. PubMed DOI
Krzysztofik M, et al. Acute effects of varied back squat activation protocols on muscle-tendon stiffness and jumping performance. J. Strength Cond. Res. 2023;37:1419–1427. doi: 10.1519/JSC.0000000000004453. PubMed DOI
Chen Y, et al. Effects of rest interval and training intensity on jumping performance: A systematic review and meta-analysis investigating post-activation performance enhancement. Front. Physiol. 2023;14:1202789. doi: 10.3389/fphys.2023.1202789. PubMed DOI PMC
Schoenfeld BJ, Grgic J, Van Every DW, Plotkin DL. Loading recommendations for muscle strength, hypertrophy, and local endurance: A re-examination of the repetition continuum. Sports. 2021;9:32. doi: 10.3390/sports9020032. PubMed DOI PMC
Heishman AD, et al. Countermovement jump reliability performed with and without an arm swing in NCAA division 1 intercollegiate basketball players. J. Strength Cond. Res. 2020;34:546–558. doi: 10.1519/JSC.0000000000002812. PubMed DOI
Koo TK, Li MY. A guideline of selecting and reporting intraclass correlation coefficients for reliability research. J. Chiropr. Med. 2016;15:155–163. doi: 10.1016/j.jcm.2016.02.012. PubMed DOI PMC
Campbell MJ, Walters SJK, Machin D. Medical Statistics: A Textbook for the Health Sciences. John Wiley Blackwell; 2021.
Cohen J. Statistical Power Analysis for the Behavioral Sciences. Elsevier Science; 2013.
Buchheit M. Magnitudes matter more than Beetroot Juice. Sport Perform. Sci. Rep. 2018;1:1–3.