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Shoulder movements during the initial phase of learning manual wheelchair propulsion in able-bodied subjects

机译:在健全的受试者学习手动轮椅推进的初始阶段的肩部运动。

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摘要

BACKGROUND: The kinetics and kinematics of the glenohumeral joints, and shoulder muscles activities during the initial phase of learning wheelchair propulsion by individuals with paraplegia have been partially described. But no studies carry out the kinematics of the upper-limb during the learning of non-constrained open field locomotion with a wheelchair. METHODS: Ten subjects with no manual wheelchair experience propelled themselves repetitively straight ahead along an 11m linear path. Upper-limb segment orientations were measured with an electromagnetic system. Angular displacements of joints were determined using a standardized protocol [Wu, G., Van der Helm, F.C.T., Veeger, H.E.J., Makhsous, M., Van Roy, P., Anglin, C., Nagels, J., Karduna, A.R., McQuade, K., Wang, X., Wernerl, F.W., Buchholzm, B., 2005. ISB recommendation on definitions of joint coordinate systems of various joints for the reporting of human joint motion--Part II: shoulder, elbow, wrist and hand. J. Biomech. 38(5), 981-992] and a modeling method [Biryukova, E.V., Roby-Brami, A., Frolov, A.A., Mokhtari, M., 2000. Kinematics of human arm reconstructed from spatial tracking system recordings. J. Biomech. 33, 985-995]. FINDINGS: A full 3-D scapular motion description was obtained that allowed us to measure the mean amplitudes of rotation for the nine degrees of freedom of our model. The change in the propulsion pace and the repetition of trials induced a general increase of amplitudes of joint rotations that can explain the increase of velocity among trials. INTERPRETATION: We did not observe a freezing of any DOF as predicted by Bernstein's theory of motor learning, but the increase in joint movement amplitudes could correspond to his "unfreezing of DOF" stage. This non-respect of Bernstein's theory could originate in the relative simplicity of the task.
机译:背景:部分描述了截瘫患者初始阶段初始阶段的胶质肿瘤和肩部肌肉活动的动力学和运动学。但是,在使用轮椅上的非受约束开放场运动过程中,没有研究在学习期间进行高肢的运动学。方法:沿11M线性路径,10个没有手动轮椅经验的10个受试者重复直线地推进。用电磁系统测量上肢段取向。使用标准化方案确定关节的角位移[吴,G.,van der Helm,FCT,Veeger,Hej,Makhsous,M.,Van Roy,P.,Anglin,C.,Nagels,J.,Karduna,AR ,Mcquade,K.,Wang,X.,Wernerl,FW,Buchholzm,B.,Buchholzm,B.,2005。关于报告人类联合议案的各种关节联合坐标系定义的ISB建议 - 第二部分:肩部,肘部,手腕和手。 J. Biomech。 38(5),981-992]和造型方法[Biryukova,E.V.,Roby-Brami,A.,Frolov,A.A.,Mokhtari,M.,M.,2000。人臂的运动学从空间跟踪系统录音重建。 J. Biomech。 33,985-995]。调查结果:获得了完整的3-D肩胛动作描述,使我们能够测量我们模型的九个自由度的平均旋转幅度。推进步伐的变化和试验的重复诱导了联合旋转幅度的一般增加,可以解释试验之间的速度的增加。解释:我们没有观察到伯恩斯坦的电机学习理论预测的任何DOF的冻结,但联合运动幅度的增加可能对应于他的“无人居所”阶段。这一非尊重伯尔尼斯坦的理论可以源于任务的相对简单性。

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