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Early-season changes in concentric-only, long and short stretch–shortening cycle jump performance in highly trained youth basketball players

Tomás T. Freitas, Stamatios Marinos, Georgios Koudounis, Konstantinos Spyrou, Elena Marín‐Cascales · Annals of Medicine · 2026

Researchers tracked 26 elite youth basketball players (under-16 and under-18) across pre-season and early in-season, testing four jump types: squat jump, countermovement jump, drop jump and repeated jumps. Squat and countermovement jump heights improved only during pre-season, while drop-jump ground contact times shortened and reactive strength index kept improving into the in-season, with repeated-jump RSI also rising in-season.
Takeaway: Track drop jump reactive strength index and contact time, not just countermovement jump height, to monitor in-season changes in explosive ability.
Abstract (source)

Background: In basketball, most studies analysing seasonal variations in neuromuscular performance through vertical jump testing rely solely on the countermovement jump (CMJ), a slow stretch-shortening cycle (SSC) test. This study aimed to analyse early-season changes in jumping performance in highly-trained youth basketball athletes, utilizing a comprehensive jump test battery to determine the time-course of adaptations in concentric-only qualities (using the squat jump, SJ), and slow (through the CMJ) and fast SCC function (via the drop jump and repeated jump tests, DJ and RJ).

Materials and methods: Twenty-six players (under-16: n = 14; age:14.9 ± 0.3 years; under-18: n = 12; age: 16.7 ± 0.4 years) from a high-level basketball academy volunteered to participate. In the first (T1) and final week (T2) of the pre-season, and four weeks into the in-season (i.e. week nine of the training period, T3), players completed the following tests on a contact mat on the same day: SJ, CMJ, DJ and RJ. To examine the progression of each vertical jump test across the selected different phases of the season, a repeated measures ANOVA with time (T1, T2 and T3) as factor was conducted.

Results: SJ and CMJ height improved only from T1 to T2 (both p < 0.001). DJ height remained constant, but shorter ground contact times (GCT) were observed in T2 and T3 when compared to T1 (p = 0.018 and p < 0.001, respectively). Moreover, significant and gradual increases were found in DJ reactive strength index (RSI) (T1 to T2: p = 0.039; T2 to T3: p < 0.030). In the RJ, significant improvements were found only for RSI between T2 and T3 (p = 0.005).

Conclusions: Reactive strength qualities and fast SSC performance peaked during the early in-season, while changes in concentric-only and slow SSC function (assessed with SJ and CMJ, respectively) occurred exclusively during the pre-season.KEY MESSAGESDifferent vertical jump tests showed distinct early-season changes in youth basketball.Squat (SJ) and Countermovement Jump (CMJ) performance improved only during the pre-season, while reactive strength qualities assessed via the Drop Jump (DJ) and Repeated Jumps peaked during the early in-season.DJ reactive strength index and ground contact times might be more sensitive than CMJ or SJ height to detect changes in neuromuscular capabilities in-season.

Primary studyOpen accessWomen's & Youth Athletics
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