BMC Sports Science Medicine and Rehabilitation· 2026Q1
Multimodal Yüksek Yoğunluklu Interval Antrenmanı, Ergen Basketbol Oyuncularında Aerobik Kapasite ve Sprint Performansında Küçük Sahalı Oyunlar ve Dril Bazlı Yüksek Yoğunluklu Interval Antrenmana Göre Daha Fazla Gelişme Sağlıyor: Rastgele Kontrollü Bir Çalışma
Multimodal high-intensity interval training elicits greater improvements in aerobic capacity and sprint performance versus small-sided games and drill-based HIIT in adolescent basketball players: a randomized controlled trial
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
6 haftalık multimodal yüksek yoğunluklu interval antrenman (M-HIIT) protokolü, ergen erkek basketbol oyuncularında küçük sahalı oyunlar (SSG) ve dril bazlı HIIT'e (DB-HIIT) göre aerobik kapasiteyi (+%10.9), 20 metre sprint süresini (-%5.1) ve tekrarlanan sprint yeteneğini (-7.39 puan) anlamlı derecede daha fazla iyileştirdi.
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Özet (abstract)
Traditional high-intensity interval training (HIIT) often lacks sport specificity, while small-sided games (SSG) may fail to isolate specific physiological qualities. Integrating both approaches could optimize training efficiency. Therefore, this study aimed to compare the effects of a multimodal HIIT (M-HIIT) protocol versus conventional small-sided games (SSG) and drill-based HIIT (DB-HIIT) on pre-specified primary outcomes (aerobic capacity, 20-m sprint performance, defensive agility, and perceived training loads) and secondary outcomes (repeated-sprint ability, anaerobic capacity, vertical jump, ball control, and shooting) in adolescent basketball players. Thirty-six male adolescent players (mean age: 14.8 years) were randomly assigned to M-HIIT, SSG, or DB-HIIT groups. Throughout the intervention, perceived training loads and internal training load (ITL) were continuously monitored to compare the acute perceptual demands of each protocol. Following a 6-week intervention (12 sessions, twice weekly), 30 participants completed pre- and post-assessments of aerobic capacity (Yo-Yo IR1), sprint performance (10/20 m), repeated-sprint ability (RSA), agility (T-test, line drill), vertical jump (CMJ), and technical skills (shooting, ball control). Between-group differences were analyzed using analysis of covariance (AN-COVA) with baseline values as covariates. For primary outcomes, the M-HIIT group demonstrated the largest improvements in estimated VO₂max (+ 10.9%, d = 2.33), 20-m sprint time (-5.1%, d = -1.92), and RSA fatigue resistance (decrement score: -7.39 points, d = -2.66). Between-group analyses confirmed that M-HIIT induced significantly greater gains in aerobic capacity, linear sprint performance, and fatigue resistance compared with both SSG ( p < 0.05) and DB-HIIT ( p < 0.01). Defensive agility (a primary outcome) improvements favored M-HIIT over DB-HIIT ( p = 0.007) but were comparable to SSG. Regarding secondary outcomes, M-HIIT induced greater improvements in repeated-sprint fatigue resistance and anaerobic capacity compared to both SSG and DB-HIIT, whereas ball control and shooting performance improved similarly across all groups. M-HIIT is a time-efficient conditioning strategy that elicits enhanced aerobic, sprint, and fatigue-resistance adaptations compared with conventional SSG or DB-HIIT, without compromising technical skill development. Coaches should consider integrating multimodal formats into youth basketball train-ing to simultaneously optimize physiological and sport-specific outcomes.
Yazarların özeti; kaynağından alınmıştır. BMC Sports Science Medicine and Rehabilitation, 2026 · DOI ↗
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