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Investigating centre of mass stabilisation as the goal of posture and movement coordination during human whole body reaching

机译:研究质量稳定中心作为人体到达人体时姿势和运动协调的目标

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In the light of experimental results showing significant forward centre of mass (CoM) displacements within the base of support, this study investigated if whole body reaching movements can be executed whilst keeping the CoM fixed in the horizontal axis. Using kinematic simulation techniques, angular configurations were recreated from experimental data imposing two constraints: a constant horizontal position of the CoM and an identical trajectory of the hand to grasp an object. The comparison between recorded and simulated trials showed that stabilisation of the CoM was associated with greater backward hip displacements, which became more marked with increasing object distance. This was in contrast to recorded trials showing reductions in backward hip displacements with increasing distance. Results also showed that modifications to angular displacements were necessary only at the shoulder and hip joints, but that these modifications were within the limits of joint mobility. The analysis of individual joint torques revealed that the pattern and timing of simulated trials were similar to those recorded experimentally. Peak joint torque values showed particularly that keeping the CoM at a constant horizontal position resulted in significantly smaller ankle peak flexor and extensor torques. It may be concluded from this study that 'stabilising' the CoM during human whole body reaching represents a feasible strategy, but not the one chosen by subjects under experimental conditions. Our results also do not support the idea of the CoM as the stabilised reference value for the coordination between posture and goal-directed movements. [References: 36]
机译:根据实验结果显示支撑基座内的质心(CoM)向前有明显的位移,本研究调查了在保持CoM固定在水平轴上的同时是否可以执行整个身体的运动。使用运动学模拟技术,可从施加两个约束的实验数据中重新创建角度配置:CoM的恒定水平位置和用于抓取物体的手的相同轨迹。记录试验和模拟试验之间的比较表明,CoM的稳定与更大的后向髋关节位移有关,随着向后距离的增加,这种现象变得更加明显。这与记录的试验相反,该试验显示随着距离的增加,向后髋关节位移减小。结果还表明,仅在肩部和髋部关节处需要对角位移进行修改,但这些修改在关节活动度的范围内。对单个关节扭矩的分析表明,模拟试验的模式和时间与实验记录的相似。关节峰值扭矩值特别表明,将CoM保持在恒定的水平位置可显着减小踝关节的峰值屈肌和伸肌扭矩。从这项研究中可以得出结论,在人体整个到达过程中“稳定” CoM是一种可行的策略,而不是受试者在实验条件下选择的策略。我们的结果也不支持将CoM作为姿势和目标定向运动之间的协调稳定参考值。 [参考:36]

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