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Investigating the Stretch-shortening Cycle Fatigue Response to a High-intensity Stressful Phase of Training in Collegiate Men's Basketball

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Date 2024 May 7
PMID 38711571
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Abstract

Introduction: While using force-plate derived measures of vertical jump performance, reflective of stretch-shortening-cycle (SSC) efficiency is common practice in sport science, there is limited evidence as to which tests and measures may be most sensitive toward neuromuscular fatigue. The aim of this study was to explore the SSC fatigue response to a one-week high-intensity fatiguing phase of training in National Collegiate Athletic Association (NCAA) Division-I basketball players.

Methods: The study timeline consisted of three weeks of baseline measures, one week of high-intensity training, and two weeks of follow-up testing. Countermovement jumps (CMJ) and 10-5 hop tests were performed at baseline, as well as at two time-points during, and three time-points following the fatiguing training period, allowing for performance-comparisons with baseline.

Results: Compared to the weekly training sum at baseline, during the high intensity training phase, athletes were exposed to very large increases in selected external load metrics (ES = 1.44-3.16), suggesting that athletes experienced fatigue acutely, as well as potential longer lasting reductions in performance. Vertical jump data suggested that in the CMJ, traditional metrics such as jump height, as well as metrics reflecting kinetic outputs and movement strategies, were sensitive to the stark increase in high-intensity training exposure. The 10-5 hop test suggested a fatigue-induced loss of tolerance to ground impact reflected by performance reductions in metrics related to jump height and reactive strength qualities.

Discussion: These findings emphasize that when monitoring neuromuscular fatigue, variables and assessments may not be looked at individually, but rather as part of a more global monitoring approach.

Citing Articles

Small-Sided Games with Baskets Are Significantly More Effective at Enhancing Neuromuscular Force Parameters Compared to Ball Possession Games: A Randomized Controlled Study in Young Male Basketball Players.

Cao J, Eakronnarongchai W, Duangkam J J Sports Sci Med. 2024; 23(1):638-646.

PMID: 39228775 PMC: 11366856. DOI: 10.52082/jssm.2024.638.

References
1.
Jones C, Griffiths P, Mellalieu S . Training Load and Fatigue Marker Associations with Injury and Illness: A Systematic Review of Longitudinal Studies. Sports Med. 2016; 47(5):943-974. PMC: 5394138. DOI: 10.1007/s40279-016-0619-5. View

2.
Mercer R, Russell J, McGuigan L, Coutts A, Strack D, McLean B . Finding the Signal in the Noise-Interday Reliability and Seasonal Sensitivity of 84 Countermovement Jump Variables in Professional Basketball Players. J Strength Cond Res. 2023; 37(2):394-402. DOI: 10.1519/JSC.0000000000004182. View

3.
Ellis M, Myers T, Taylor R, Morris R, Akubat I . The Dose-Response Relationship Between Training-Load Measures and Changes in Force-Time Components During a Countermovement Jump in Male Academy Soccer Players. Int J Sports Physiol Perform. 2022; 17(11):1634-1641. DOI: 10.1123/ijspp.2022-0107. View

4.
Merrigan J, Stone J, Wagle J, Hornsby W, Ramadan J, Joseph M . Using Random Forest Regression to Determine Influential Force-Time Metrics for Countermovement Jump Height: A Technical Report. J Strength Cond Res. 2021; 36(1):277-283. DOI: 10.1519/JSC.0000000000004154. View

5.
Johnston R, Gibson N, Twist C, Gabbett T, MacNay S, Macfarlane N . Physiological responses to an intensified period of rugby league competition. J Strength Cond Res. 2012; 27(3):643-54. DOI: 10.1519/JSC.0b013e31825bb469. View