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The effect of different ranges of motion on local dynamic stability of the elbow during unloaded repetitive flexion-extension movements

机译:卸载重复屈曲延伸运动中肘部局部动态稳定性的不同运动范围的影响

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摘要

Local dynamic stability (LDS) of movement is controlled primarily by active muscles, and is known to be influenced by factors such as movement speed and inertial load. Other factors such as muscle length, the length of the target trajectory, and the resistance of passive tissues through ranges of motion (ROM) may also influence LDS. This study was designed to examine the effect of ROM, which impacts each of the aforementioned factors, on LDS of the elbow. 16 participants performed 30 unloaded, repetitive, flexion-extension movements of the elbow with varying (1) angular displacement magnitudes: 40° and 80°; (2) locations of ROM: mid-range, flexion end-range, extension end-range; and (3) rotated positions of the forearm: pronated and supinated. LDS was calculated using a finite time Lyapunov analysis of angular elbow flexion-extension kinematic data. EMG-based muscle activation and co-contraction data were also examined for possible mechanisms of stabilization. Results showed no changes in LDS with any movement condition; however, there were significant effects on muscle activation with ROM location and forearm rotated position. This suggests that a consistent level of LDS of the elbow through varying ROMs is maintained, at least in part, by the active control of the elbow flexor and extensor muscles.
机译:局部动态稳定性(LDS)的运动主要由活性肌肉控制,并且已知受到移动速度和惯性负载等因素的影响。诸如肌肉长度,靶轨迹的长度的其他因素,通过运动范围(ROM)的被动组织的电阻也可能影响LDS。本研究旨在检查ROM的效果,影响肘部LDS的上述各种因素。 16名参与者进行了30个卸载,重复,弯曲的弯曲运动,具有不同(1)角位移量大:40°和80°; (2)ROM的位置:中档,屈曲终点,延伸终点;和(3)前臂的旋转位置:有起起并纯合。使用有限时间Lyapunov分析分析角肘屈曲 - 扩展运动数据来计算LDS。还检查了基于EMG的肌肉活化和共收缩数据,以获得可能的稳定机制。结果显示,LDS没有任何移动条件的变化;然而,对具有ROM位置和前臂旋转位置的肌肉激活存在显着影响。这表明,至少部分地,至少部分地通过肘部屈肌和伸肌肌的主动控制维持通过变化的ROM的弯头的LDS的一致水平。

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