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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Load emphasizes muscle effort minimization during selection of arm movement direction
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Load emphasizes muscle effort minimization during selection of arm movement direction

机译:在选择手臂运动方向时,负荷强调最小化肌肉力量

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Background Directional preferences during center-out horizontal shoulder-elbow movements were previously established for both the dominant and non-dominant arm with the use of a free-stroke drawing task that required random selection of movement directions. While the preferred directions were mirror-symmetrical in both arms, they were attributed to a tendency specific for the dominant arm to simplify control of interaction torque by actively accelerating one joint and producing largely passive motion at the other joint. No conclusive evidence has been obtained in support of muscle effort minimization as a contributing factor to the directional preferences. Here, we tested whether distal load changes directional preferences, making the influence of muscle effort minimization on the selection of movement direction more apparent. Methods The free-stroke drawing task was performed by the dominant and non-dominant arm with no load and with 0.454 kg load at the wrist. Motion of each arm was limited to rotation of the shoulder and elbow in the horizontal plane. Directional histograms of strokes produced by the fingertip were calculated to assess directional preferences in each arm and load condition. Possible causes for directional preferences were further investigated by studying optimization across directions of a number of cost functions. Results Preferences in both arms to move in the diagonal directions were revealed. The previously suggested tendency to actively accelerate one joint and produce passive motion at the other joint was supported in both arms and load conditions. However, the load increased the tendency to produce strokes in the transverse diagonal directions (perpendicular to the forearm orientation) in both arms. Increases in required muscle effort caused by the load suggested that the higher frequency of movements in the transverse directions represented increased influence of muscle effort minimization on the selection of movement direction. This interpretation was supported by cost function optimization results. Conclusions While without load, the contribution of muscle effort minimization was minor, and therefore, not apparent, the load revealed this contribution by enhancing it. Unlike control of interaction torque, the revealed tendency to minimize muscle effort was independent of arm dominance.
机译:背景技术先前已经通过使用自由行程的绘制任务来为支配和非支配的手臂建立了中心向外的水平肩肘运动期间的方向偏好,这需要随机选择运动方向。尽管优选的方向在两个手臂上都是镜像对称的,但它们却归因于优势手臂特有的一种趋势,即通过主动加速一个关节并在另一关节上产生很大的被动运动来简化对相互作用扭矩的控制。尚未获得确凿的证据来支持将肌肉力量的最小化作为方向偏好的贡献因素。在这里,我们测试了远端负荷是否改变了方向偏好,从而使肌肉力量最小化对运动方向选择的影响更加明显。方法由无负荷的主臂和非主臂以0.454 kg的腕力执行自由行程绘画任务。每个手臂的运动仅限于肩膀和肘部在水平面内的旋转。计算指尖产生的笔触的方向直方图,以评估每个手臂和负载情况下的方向偏好。通过研究跨多个成本函数的方向的优化,进一步研究了方向性偏好的可能原因。结果揭示了在对角线方向上移动的双臂的偏好。先前提出的主动加速一个关节并在另一关节产生被动运动的趋势在臂和负载条件下均得到了支持。但是,负荷增加了在两个手臂的横向对角线方向(垂直于前臂方向)上产生冲程的趋势。由载荷引起的所需肌肉力量的增加表明,横向运动的频率越高,表示肌肉力量最小化对运动方向选择的影响越大。成本函数优化结果支持了这种解释。结论在没有负荷的情况下,最小化肌肉力量的贡献很小,因此,负荷并不明显,但通过增强它显示了这一贡献。与控制交互扭矩不同,所显示的最小化肌肉力量的趋势与手臂的优势无关。

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