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Elbow joint torque-angle-IEMG relation at constant muscle activities in voluntary contraction

机译:自愿收缩中恒定肌肉活动时肘关节扭矩-角度-IEMG的关系

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The static relationship between elbow joint angle and torque at constant IEMGs was investigated with the aid of an artificial neural network technique. A normal volunteer was allowed to move his upper extremity freely on a horizontal plane, and was instructed to maintain his forearm posture at a target position against an external load applied to his wrist. Firstly, seven channel IEMGs, joint angles and torques around elbow and shoulder were measured. Secondly, the neural network model was constructed; inputs were IEMGs and joint angles, outputs were torques. Finally, elbow torque was estimated at various elbow angles with constant IEMGs by using the model. The torque of extensor muscles monotonically increased as flexion of the elbow joint. This characteristic was similar to that of monkey's triceps brachii. However the torque of flexor muscles increased and then decreased as extension of the elbow joint. This characteristic does not agree with the fundamental property of the equilibrium point hypothesis.
机译:借助人工神经网络技术研究了恒定IEMG时肘关节角度与扭矩之间的静态关系。普通志愿者被允许在水平面上自由移动他的上肢,并被指示将他的前臂姿势保持在目标位置,以抵抗施加在手腕上的外部负荷。首先,测量了七个通道的IEMG,肘关节和肩部周围的关节角度和扭矩。其次,建立了神经网络模型。输入是IEMG和关节角度,输出是扭矩。最后,通过使用该模型,在恒定IEMG的情况下,估算了各种肘部角度的肘部扭矩。伸肌的扭矩随着肘关节的屈曲而单调增加。此特征类似于猴子的肱三头肌。但是,随着肘关节的伸展,屈肌的扭矩先增加后减小。该特征与平衡点假设的基本特性不一致。

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