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Maximum voluntary joint torque as a function of joint angle and angular velocity: model development and application to the lower limb

机译:最大自愿关节扭矩与关节角度和角速度的关系:模型的开发和在下肢的应用

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摘要

Measurements of human strength can be important during analyses of physical activities. Such measurements have often taken the form of the maximum voluntary torque at a single joint angle and angular velocity. However, the available strength varies substantially with joint position and velocity. When examining dynamic activities, strength measurements should account for these variations. A model is presented of maximum voluntary joint torque as a function of joint angle and angular velocity. The model is based on well-known physiological relationships between muscle force and length and between muscle force and velocity and was tested by fitting it to maximum voluntary joint torque data from six different exertions in the lower limb. Isometric, concentric and eccentric maximum voluntary contractions were collected during hip extension, hip flexion, knee extension, knee flexion, ankle plantar flexion and dorsiflexion. Model parameters are reported for each of these exertion directions by gender and age group. This model provides an efficient method by which strength variations with joint angle and angular velocity may be incorporated into comparisons between joint torques calculated by inverse dynamics and the maximum available joint torques.
机译:在进行体育锻炼的分析过程中,测量人的力量可能很重要。此类测量通常采用单个关节角度和角速度下最大自愿扭矩的形式。但是,可用强度随关节位置和速度的不同而有很大差异。在检查动态活动时,强度测量应考虑这些变化。提出了最大自愿关节扭矩随关节角度和角速度变化的模型。该模型基于肌肉力量与长度之间以及肌肉力量与速度之间的众所周知的生理关系,并通过将其拟合到来自下肢六种不同动作的最大自愿关节扭矩数据进行了测试。在髋关节伸展,髋关节屈曲,膝盖伸展,膝盖屈曲,踝plant屈和背屈期间收集等距,同心和偏心最大自愿收缩。按性别和年龄组分别报告了这些运动方向的模型参数。该模型提供了一种有效的方法,通过该方法,可以将具有关节角度和角速度的强度变化并入由逆动力学计算的关节扭矩与最大可用关节扭矩之间的比较中。

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