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Relationship between movement time and hip moment impulse in the sagittal plane during sit-to-stand movement: a combined experimental and computer simulation study

机译:从坐到站运动期间矢状面运动时间与髋关节力矩之间的关系:实验与计算机模拟相结合的研究

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The association between repetitive hip moment impulse and the progression of hip osteoarthritis is a recently recognized area of study. A sit-to-stand movement is essential for daily life and requires hip extension moment. Although a change in the sit-to-stand movement time may influence the hip moment impulse in the sagittal plane, this effect has not been examined. The purpose of this study was to clarify the relationship between sit-to-stand movement time and hip moment impulse in the sagittal plane. Twenty subjects performed the sit-to-stand movement at a self-selected natural speed. The hip, knee, and ankle joint angles obtained from experimental trials were used to perform two computer simulations. In the first simulation, the actual sit-to-stand movement time obtained from the experiment was entered. In the second simulation, sit-to-stand movement times ranging from 0.5 to 4.0?s at intervals of 0.25?s were entered. Hip joint moments and hip moment impulses in the sagittal plane during sit-to-stand movements were calculated for both computer simulations. The reliability of the simulation model was confirmed, as indicated by the similarities in the hip joint moment waveforms (r?=?0.99) and the hip moment impulses in the sagittal plane between the first computer simulation and the experiment. In the second computer simulation, the hip moment impulse in the sagittal plane decreased with a decrease in the sit-to-stand movement time, although the peak hip extension moment increased with a decrease in the movement time. These findings clarify the association between the sit-to-stand movement time and hip moment impulse in the sagittal plane and may contribute to the prevention of the progression of hip osteoarthritis.
机译:重复性髋力矩冲动与髋骨关节炎进展之间的关联是最近公认的研究领域。坐姿站立运动对于日常生活至关重要,并且需要髋部伸展力矩。尽管从坐到站运动时间的变化可能会影响矢状面中的髋关节力矩,但尚未检查这种效果。这项研究的目的是阐明在矢状面中从站立到站立的运动时间和髋关节力矩之间的关系。 20名受试者以自选的自然速度进行了从坐到站的运动。从试验中获得的髋关节,膝关节和踝关节角被用于执行两个计算机模拟。在第一个模拟中,输入了从实验中获得的实际坐着运动的时间。在第二个模拟中,输入坐立运动的时间范围为0.5到4.0?s,间隔为0.25?s。对于两种计算机模拟,都计算了坐坐运动期间矢状面中的髋关节力矩和髋力矩。如在第一次计算机仿真和实验之间,髋关节力矩波形(r 2 =≤0.99)和矢状面中的髋力矩脉冲的相似性所表明的,仿真模型的可靠性得到了证实。在第二个计算机模拟中,矢状面内的髋部冲动脉冲随坐坐运动时间的减少而减小,尽管峰值髋部伸展力矩随运动时间的减少而增加。这些发现阐明了从坐到站的运动时间与矢状面内的髋部冲动冲动之间的关联,并可能有助于预防髋骨关节炎的发展。

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