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Biomechanical analysis of double poling in elite cross-country skiers.

机译:精英越野滑雪者双杆滑雪的生物力学分析。

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PURPOSE: To further the understanding of double poling (DP) through biomechanical analysis of upper and lower body movements during DP in cross-country (XC) skiing at racing speed. METHODS: Eleven elite XC skiers performed DP at 85% of their maximal DP velocity (V85%) during roller skiing at 1 degrees inclination on a treadmill. Pole and plantar ground reaction forces, joint angles (elbow, hip, knee, and ankle), cycle characteristics, and electromyography (EMG) of upper and lower body muscles were analyzed. RESULTS: 1) Pole force pattern with initial impact force peak and the following active force peak (PPF) correlated to V85%, (r = 0.66, P < 0.05); 2) active flexion-extension pattern in elbow, hip, knee, and ankle joints with angle minima occurring around PPF, correlated to hip angle at pole plant (r = -0.89, P < 0.01), minimum elbow angle (r = -0.71), and relative poling time (r = -0.72, P < 0.05); 3) two different DP strategies (A and B), where strategy A (best skiers) was characterized by higher angular elbow- and hip-flexion velocities, smaller minimum elbow (P < 0.01) and hip angles (P < 0.05), and higher PPF (P < 0.05); 4) EMG activity in trunk and hip flexors, shoulder, and elbow extensors, and several lower body muscles followed a specific sequential pattern with changing activation levels; and 5) EMG activity in lower body muscles showed DP requires more than upper body work. CONCLUSIONS: DP was found to be a complex movement involving both the upper and lower body showing different strategies concerning several biomechanical aspects. Future research should further investigate the relationship between biomechanical and physiological variables and elaborate training models to improve DP performance.
机译:目的:通过对越野(XC)赛车中速滑过程中DP上下运动的生物力学分析,进一步了解双极化(DP)。方法:十一名精英XC滑雪者在跑步机上以1度倾斜度滑旱冰时,以其最大DP速度(V85%)的85%进行了DP。分析了上肢和下肢肌肉的极点和足底地面反作用力,关节角度(肘部,臀部,膝盖和脚踝),循环特征和肌电图(EMG)。结果:1)具有初始冲击力峰值和随后的主动力峰值(PPF)的杆力模式与V85%相关(r = 0.66,P <0.05); 2)肘,髋,膝和踝关节的主动屈伸模式,在PPF周围出现最小角度,与极植的髋关节角度相关(r = -0.89,P <0.01),最小肘关节角度(r = -0.71 )和相对极化时间(r = -0.72,P <0.05); 3)两种不同的DP策略(A和B),其中策略A(最佳滑雪者)的特征是较高的肘部和髋部弯曲角度速度,较小的最小肘部(P <0.01)和髋部角度(P <0.05),以及PPF较高(P <0.05); 4)躯干和臀部屈肌,肩膀和肘部伸肌以及一些下半身肌的肌电活动遵循特定的顺序模式,并具有不同的激活水平; 5)下肢肌肉的EMG活动表明DP所需的精力比上半身还要多。结论:DP被发现是一个复杂的运动,涉及上半身和下半身,在生物力学方面表现出不同的策略。未来的研究应进一步研究生物力学和生理变量之间的关系,并建立完善的训练模型以改善DP表现。

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