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BIOMECHANICAL ANALYSIS OF SWING-THROUGH GAIT IN PARAPLEGIC AND NON-DISABLED INDIVIDUALS

机译:瘫痪者和非残障人士摆动臂步态的生物力学分析

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The purpose of this study was to determine if the deficit of motor function affects the displacement of the lower limbs and increases the physical strain of upper-body musculature in paraplegic individuals performing swing-through gait. A biomechanical model consisting of four linked rigid bodies was developed to analyze this type of gait. Data were obtained on the spatio-temporal characteristics, kinematics and kinetics from a sample of eight non-disabled and nine paraplegic individuals performing swing-through gait. Net muscle moments acting on the segments and mechanical powers at three joints (shedder, elbow, hip) were estimated during a complete gait cycle from basic force equations and moments of force acting on a rigid body. Results show that the two groups selected a similar comfortable speed suggesting that the type of gait per se is an important factor in the selection of speed. Paraplegic individuals had a longer crutch stance phase duration than the non-disabled due to inadequate hip muscle activations as confirmed by the moment of force and power analyses. Moreover, a higher moment of force at the shoulder was observed in the paraplegics individuals, mostly during the crutch stance phase. Consequently, the loss of motor function of the lower limbs in paraplegic individuals modifies the biomechanical pattern of swing-through gait compared to non-disabled individuals, and seems to increase the physiological demand on the upper limbs during the stance and swing phases of the gait cycle. [References: 20]
机译:这项研究的目的是确定在进行摇摆式步态的截瘫患者中,运动功能障碍是否影响下肢的位移并增加了上身肌肉的物理应变。建立了由四个链接的刚体组成的生物力学模型来分析这种步态。数据是从八名非残障者和九名截瘫步态个体的样本中获得的时空特征,运动学和动力学数据。根据基本力方程式和作用在刚体上的力矩,在一个完整的步态周期中估算出作用在各节段上的净肌肉力矩和三个关节(下肢,肘部,臀部)的机械力量。结果表明,两组人选择了相似的舒适速度,表明步态本身是速度选择中的重要因素。截瘫患者的拐杖姿态阶段持续时间比非残障者更长,这是由于用力和力量分析的时刻证实了臀部肌肉激活不足所致。此外,在截瘫患者中观察到了较高的肩部力矩,主要是在拐杖站立阶段。因此,截瘫患者下肢运动功能的丧失与非残疾个体相比,改变了摇摆式步态的生物力学模式,并且似乎在步态的站立和摇摆阶段增加了上肢的生理需求。周期。 [参考:20]

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