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Upper limb kinetic analysis of three sitting pivot wheelchair transfer techniques.

机译:三种坐姿枢纽轮椅转移技术的上肢动力学分析。

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BACKGROUND: The objective of this study was to investigate differences in shoulder, elbow and hand kinetics while performing three different SPTs that varied in terms of hand and trunk positioning. METHODS: Fourteen unimpaired individuals (8 male and 6 female) performed three variations of sitting pivot transfers in a random order from a wheelchair to a level tub bench. Two transfers involved a forward flexed trunk (head-hips technique) and the third with the trunk remaining upright. The two transfers involving a head hips technique were performed with two different leading hand initial positions. Motion analysis equipment recorded upper body movements and force sensors recorded hand reaction forces. Shoulder and elbow joint and hand kinetics were computed for the lift phase of the transfer. FINDINGS: Transferring using either of the head hips techniques compared to the trunk upright style of transferring resulted in reduced superior forces at the shoulder (P<0.002), elbow (P<0.004) and hand (P<0.013). There was a significant increase in the medial forces in the leading elbow (P=0.049) for both head hip transfers and the trailing hand for the head hip technique with the arm further away from the body (P<0.028). The head hip techniques resulted in higher shoulder external rotation, flexion and extension moments compared to the trunk upright technique (P<0.021). INTERPRETATION: Varying the hand placement and trunk positioning during transfers changes the load distribution across all upper limb joints. The results of this study may be useful for determining a technique that helps preserve upper limb function overtime.
机译:背景:这项研究的目的是研究肩部,肘部和手部动力学的差异,同时进行三种不同的手部和躯干位置不同的SPT。方法:十四名未受损个体(8名男性和6名女性)以随机顺序执行了三种坐姿枢轴转移的变化,从轮椅到水平浴盆长凳。两次转移均涉及向前弯曲的躯干(头部臀部技术),第三次转移使躯干保持直立。涉及头臀部技术的两次转移是在两个不同的前导手初始位置进行的。运动分析设备记录了上半身的运动,力传感器记录了手的反作用力。计算了转移的提升阶段的肩肘关节和手动力学。结果:与躯干直立式的转移相比,使用任何一种头臀部技术进行的转移,均导致肩部(P <0.002),肘部(P <0.004)和手部(P <0.013)的优越力量减小。头部髋关节转移时,前肘的内侧力(P = 0.049)显着增加,而头部髋关节技术的后手则使手臂远离身体(P <0.028)。与躯干直立技术相比,头部髋关节技术导致更高的肩部外旋,屈曲和伸展力矩(P <0.021)。解释:在转移过程中改变手的位置和躯干的位置会改变所有上肢关节的负荷分布。这项研究的结果可能有助于确定一种有助于长时间保留上肢功能的技术。

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