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孤立关节扭矩与最大多关节任务之间的可转移性:一项初步研究。

Transferability between Isolated Joint Torques and a Maximum Polyarticular Task: A Preliminary Study.

作者信息

Costes Antony, Villeger David, Moretto Pierre, Watier Bruno

机构信息

PRISSMH, University of Toulouse, UPS, Toulouse, France.

PRISSMH, University of Toulouse, UPS, Toulouse, France; University of Toulouse; UPS; Centre de Recherches sur la Cognition Animale; Toulouse Cedex 9, France; CNRS; Centre de Recherches sur la Cognition Animale; Toulouse Cedex 9, France.

出版信息

J Hum Kinet. 2016 Apr 13;50:5-14. doi: 10.1515/hukin-2015-0136. eCollection 2016 Apr 1.

Abstract

The aims of this study were to determine if isolated maximum joint torques and joint torques during a maximum polyarticular task (i.e. cycling at maximum power) are correlated despite joint angle and velocity discrepancies, and to assess if an isolated joint-specific torque production capability at slow angular velocity is related to cycling power. Nine cyclists completed two different evaluations of their lower limb maximum joint torques. Maximum Isolated Torques were assessed on isolated joint movements using an isokinetic ergometer and Maximum Pedalling Torques were calculated at the ankle, knee and hip for flexion and extension by inverse dynamics during cycling at maximum power. A correlation analysis was made between Maximum Isolated Torques and respective Maximum Pedalling Torques [3 joints x (flexion + extension)], showing no significant relationship. Only one significant relationship was found between cycling maximum power and knee extension Maximum Isolated Torque (r=0.68, p<0.05). Lack of correlations between isolated joint torques measured at slow angular velocity and the same joint torques involved in a polyarticular task shows that transfers between both are not direct due to differences in joint angular velocities and in mono-articular versus poly articular joint torque production capabilities. However, this study confirms that maximum power in cycling is correlated with slow angular velocity mono-articular maximum knee extension torque.

摘要

本研究的目的是确定在关节角度和速度存在差异的情况下,孤立的最大关节扭矩与最大多关节任务(即最大功率骑行)期间的关节扭矩是否相关,并评估慢角速度下孤立的关节特异性扭矩产生能力是否与骑行功率相关。九名自行车运动员完成了对其下肢最大关节扭矩的两种不同评估。使用等速测力计对孤立关节运动评估最大孤立扭矩,并在最大功率骑行期间通过逆动力学计算踝关节、膝关节和髋关节屈伸时的最大蹬踏扭矩。对最大孤立扭矩和各自的最大蹬踏扭矩[3个关节x(屈伸)]进行相关性分析,结果显示无显著关系。仅发现骑行最大功率与膝关节伸展最大孤立扭矩之间存在显著关系(r = 0.68,p < 0.05)。在慢角速度下测量的孤立关节扭矩与多关节任务中涉及的相同关节扭矩之间缺乏相关性,这表明由于关节角速度以及单关节与多关节扭矩产生能力的差异,两者之间的转换不是直接的。然而,本研究证实骑行中的最大功率与慢角速度单关节最大膝关节伸展扭矩相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6061/5260634/05b60a3d9a39/j_hukin-2015-0136_fig_001.jpg

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