Center for Sport Studies, Rey Juan Carlos University, Madrid, Spain.
Faculty of Health Sciences, Isabel I University, Burgos, Spain.
J Strength Cond Res. 2022 Mar 1;36(3):827-831. doi: 10.1519/JSC.0000000000003536.
Jiménez-Reyes, P, Casado, A, González, JE, and Rodríguez-Fernández, C. Influence of hurdling clearance on sprint mechanical properties in high-level athletes. J Strength Cond Res 36(3): 827-831, 2022-Short hurdling races are sprint races in which athletes must also clear 10 hurdles. Assessing the force-velocity (F-V) profile in sprinting has been found useful for implementing individualized training programs and determining the mechanical effectiveness in force application. This study therefore compared the sprint mechanical F-V profile between flat and hurdle conditions to distinguish which mechanical capacity (i.e., maximum force [F0], maximum velocity [V0], or maximum power [Pmax]) is required to optimize performance in hurdling races. Twenty-two athletes (10 men and 12 women, aged: 22.4 ± 3.6 years old) competing at the national and elite performance levels conducted 2 maximal sprints of 40 m in both flat and hurdle conditions. F0, V0, FVslope, Pmax, and decrease and maximal ratio of horizontal force (DRF and RFpeak, respectively) were assessed for each condition. A higher F0 (effect size [ES] = 1.69) and a lower V0 (ES = 2.08), DRF (ES = 3.15) and RFpeak (ES = 1.31) were found in the hurdle condition than in the flat condition. No significant differences were observed between conditions for Pmax (ES = 0.01). These results support the potential of using the F-V profile to monitor sprint mechanics to optimize specific and individualized sprint training programs for hurdlers and sprinters. Coaches of hurdlers should thus consider implementing in their training routines exercises that were found to be effective on the development of F0, such as heavy load resisted sprints.
希门尼斯-雷耶斯、卡萨斯多、冈萨雷斯、J.E. 和罗德里格斯-费尔南德斯,C. 跨越高度对高水平运动员短跑力学特性的影响。《力量与条件研究杂志》36(3):827-831,2022 年-短跨栏比赛是一种短跑比赛,运动员还必须跨越 10 个栏架。评估短跑时的力量-速度(F-V)曲线已被证明有助于实施个性化训练计划并确定力量应用的机械效率。因此,本研究比较了平跑和跨栏条件下的短跑机械 F-V 曲线,以区分在跨栏比赛中需要哪种机械能力(即最大力量[F0]、最大速度[V0]或最大功率[Pmax])来优化表现。22 名运动员(10 名男性和 12 名女性,年龄:22.4±3.6 岁)在国家和精英表现水平上进行了 2 次 40 米的最大冲刺,分别在平跑和跨栏条件下进行。评估了每种条件下的 F0、V0、FV 斜率、Pmax 以及水平力的减小和最大比值(DRF 和 RFpeak)。跨栏条件下的 F0 更高(效应量[ES] = 1.69),V0 更低(ES = 2.08),DRF(ES = 3.15)和 RFpeak(ES = 1.31),而平跑条件下的 F0 更低,V0 更高,DRF 和 RFpeak 更低。在 Pmax 方面,两种条件之间没有观察到显著差异(ES = 0.01)。这些结果支持使用 F-V 曲线来监测短跑力学特性以优化特定和个性化的跨栏和短跑训练计划的潜力。因此,跨栏运动员的教练应考虑在训练常规中实施被发现对 F0 发展有效的练习,例如抗重冲刺。