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首页> 外文期刊>Journal of Biomechanics >Knee and ankle joint torque-angle relationships of multi-joint leg extension.
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Knee and ankle joint torque-angle relationships of multi-joint leg extension.

机译:膝关节和踝关节的扭矩角度关系,多关节伸腿。

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The force-length-relation (F-l-r) is an important property of skeletal muscle to characterise its function, whereas for in vivo human muscles, torque-angle relationships (T-a-r) represent the maximum muscular capacity as a function of joint angle. However, since in vivo force/torque-length data is only available for rotational single-joint movements the purpose of the present study was to identify torque-angle-relationships for multi-joint leg extension. Therefore, inverse dynamics served for calculation of ankle and knee joint torques of 18 male subjects when performing maximum voluntary isometric contractions in a seated leg press. Measurements in increments of 10 degrees knee angle from 30 degrees to 100 degrees knee flexion resulted in eight discrete angle configurations of hip, knee and ankle joints. For the knee joint we found an ascending-descending T-a-r with a maximum torque of 289.5 degrees +/- 43.3 Nm, which closely matches literature data from rotational knee extension. In comparison to literature we observed a shift of optimum knee angle towards knee extension. In contrast, the T-a-r of the ankle joint vastly differed from relationships obtained for isolated plantar flexion. For the ankle T-a-r derived from multi-joint leg extension subjects operated over different sections of the force-length curve, but the ankle T-a-r derived from isolated joint efforts was over the ascending limb for all subjects. Moreover, mean maximum torque of 234.7 +/- 56.6 Nm exceeded maximal strength of isolated plantar flexion (185.7 +/- 27.8 Nm). From these findings we conclude that muscle function between isolated and more physiological multi-joint tasks differs. This should be considered for ergonomic and sports optimisation as well as for modelling and simulation of human movement.
机译:力长关系(F-l-r)是骨骼肌表征其功能的重要属性,而对于体内人体肌肉,扭矩-角度关系(T-a-r)表示最大肌肉能力与关节角度的关系。但是,由于体内力/扭矩长度数据仅可用于旋转的单关节运动,因此本研究的目的是确定多关节腿部伸展的扭矩-角度关系。因此,当在坐姿的腿部推举器中执行最大自愿等距收缩时,逆动力学可用于计算18位男性受试者的踝关节和膝关节扭矩。从30度到100度屈膝时,以10度膝角的增量进行测量,得出髋,膝和踝关节的八种离散角度配置。对于膝关节,我们发现最大扭矩为289.5度+/- 43.3 Nm的T-a-r升降,与旋转膝关节伸展的文献数据非常吻合。与文献相比,我们观察到最佳膝盖角度向膝盖伸展的移动。相反,踝关节的T-a-r与孤立的足底屈曲所获得的关系大不相同。对于源自多关节伸腿运动的踝关节T-a-r,受试者在力长曲线的不同部分进行操作,但对于所有受试者而言,源自孤立的关节努力的踝关节T-a-r均位于上肢。此外,平均最大扭矩为234.7 +/- 56.6 Nm,超过了孤立的足底屈曲的最大强度(185.7 +/- 27.8 Nm)。从这些发现,我们得出结论,孤立的和更多的生理性多关节任务之间的肌肉功能是不同的。在进行人体工程学和运动优化以及人体运动的建模和仿真时,应考虑这一点。

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