Zhang Qingshan, Gassier Robin, Eymard Noémie, Pommel Félicie, Berthier Philippe, Rahmani Abderrahmane, Hautier Christophe A
School of Athletic Performance, Shanghai University of Sport, Shanghai, China.
Laboratoire Interuniversitaire de Biologie de la Motricité, Université de Lyon, Villeurbanne Cedex, France.
J Hum Kinet. 2024 Dec 6;95:43-53. doi: 10.5114/jhk/190224. eCollection 2025 Jan.
This study investigated the relationship between force-power-velocity (F-P-V) mechanical variables measured during the ballistic bench press throw (BPT), shoulder isokinetic rotation strength, and the throwing velocity in handball players. Twenty-seven experienced male handball players (age: 20.0 ± 3.2 yrs, body height: 180.5 ± 6.3 cm, body mass: 73.9 ± 7.9 kg) volunteered for the investigation. F-P-V mechanical variables (i.e., theoretical maximal force [F0], velocity [V0], power [P]) were obtained during the single-arm BPT and an isokinetic shoulder isokinetic internal rotation test. Throwing performance was assessed for the standing and 3-step throwing velocity. Participants were divided into a "High/Fast" and a "Low/Slow" group considering their throwing performance based on a median split analysis. A strong correlation was found between V obtained from the BPT and maximal throwing velocity for standing throwing (r = 0.51, f = 1.04) and three-step throwing (r = 0.46, f = 0.85). At the same time, P obtained from the BPT had a weak association with three-step throwing performance (r = 0.18, f = 0.22). Furthermore, no significant correlation was found between all the mechanical variables obtained from the isokinetic rotation and throwing performance (all p-values > 0.05). The High/Fast group showed that only V and P obtained from the ballistic BPT had a small to moderate effect size (ES [0.06 0.23]) compared to the Low/Slow group. This finding indicates the importance of measuring the upper limb F-P-V profile obtained from the BPT in predicting throwing performance. Thus, training programs should focus on F-P-V mechanical properties to design specific training methods to optimize throwing performance in handball players.
本研究调查了在弹道式卧推投掷(BPT)过程中测量的力-功率-速度(F-P-V)力学变量、肩部等速旋转力量与手球运动员投掷速度之间的关系。27名有经验的男性手球运动员(年龄:20.0±3.2岁,身高:180.5±6.3厘米,体重:73.9±7.9千克)自愿参与该调查。在单臂BPT和等速肩部内旋测试期间获取F-P-V力学变量(即理论最大力[F0]、速度[V0]、功率[P])。评估站立和三步投掷速度的投掷表现。基于中位数分割分析,根据参与者的投掷表现将其分为“高/快”组和“低/慢”组。发现BPT获得的V与站立投掷(r = 0.51,f = 1.04)和三步投掷(r = 0.46,f = 0.85)的最大投掷速度之间存在强相关性。同时,BPT获得的P与三步投掷表现之间存在弱关联(r = 0.18,f = 0.22)。此外,等速旋转获得的所有力学变量与投掷表现之间均未发现显著相关性(所有p值>0.05)。与“低/慢”组相比,“高/快”组显示,仅弹道式BPT获得的V和P具有小到中等的效应量(ES[0.06 0.23])。这一发现表明测量从BPT获得的上肢F-P-V特征在预测投掷表现方面的重要性。因此,训练计划应专注于F-P-V力学特性,以设计特定训练方法来优化手球运动员的投掷表现。