Pumarola Jordi, Badiola-Zabala Alesander, Solana-Tramunt Mònica
Global Performance, 08022 Barcelona, Spain.
Facultat de Psicologia, Ciències de l'Educació i l'Esport Blanquerna, Universitat Ramon Llull, 08022 Barcelona, Spain.
Sports (Basel). 2025 Jun 28;13(7):212. doi: 10.3390/sports13070212.
High-intensity actions like accelerations and decelerations, often performed unilaterally, are crucial in elite female football but increase the risk of interlimb asymmetries and injury. Flywheel resistance training enhances eccentric strength, yet limited research has assessed how different inertial loads affect mechanical outputs in unilateral exercises.
This study investigated how two inertial loads (0.107 kg·m and 0.133 kg·m) influence power, acceleration, speed, and asymmetry during unilateral hip extensions in elite female footballers.
Eighteen professional players (27 ± 4 years, 59.9 ± 6.5 kg, 168.2 ± 6.3 cm, BMI 21.2 ± 1.8) completed unilateral hip extensions on a conical flywheel under both inertia conditions. A rotary encoder measured peak/average power, acceleration, speed, and eccentric-to-concentric (E:C) ratios. Bilateral asymmetries between dominant (DL) and non-dominant (NDL) limbs were assessed. Paired t-tests and Cohen's were used for analysis.
Higher inertia reduced peak and mean acceleration and speed ( < 0.001, > 0.8). Eccentric peak power significantly increased in the NDL ( < 0.001, = 3.952). E:C ratios remained stable.
Greater inertial loads reduce movement velocity but increase eccentric output in the NDL, offering potential strategies to manage neuromuscular asymmetries in elite female football players.
高强度动作如加速和减速,通常是单侧进行,在精英女子足球运动中至关重要,但会增加肢体间不对称和受伤的风险。飞轮阻力训练可增强离心力量,然而,评估不同惯性负荷如何影响单侧训练中的机械输出的研究有限。
本研究调查了两种惯性负荷(0.107 kg·m和0.133 kg·m)对精英女子足球运动员单侧髋关节伸展时的功率、加速度、速度和不对称性的影响。
18名职业球员(27±4岁,59.9±6.5 kg,168.2±6.3 cm,BMI 21.2±1.8)在两种惯性条件下在锥形飞轮上完成单侧髋关节伸展。旋转编码器测量峰值/平均功率、加速度、速度和离心与向心(E:C)比率。评估优势(DL)和非优势(NDL)肢体之间的双侧不对称性。采用配对t检验和科恩效应量进行分析。
更高的惯性降低了峰值和平均加速度以及速度(<0.001,>0.8)。NDL的离心峰值功率显著增加(<0.001,=3.952)。E:C比率保持稳定。
更大的惯性负荷会降低运动速度,但会增加NDL的离心输出,为管理精英女子足球运动员的神经肌肉不对称性提供了潜在策略。