首页> 美国卫生研究院文献>Journal of Neural Transplantation >Kinematic and EMG Responses to Pelvis and Leg Assistance Force during Treadmill Walking in Children with Cerebral Palsy
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Kinematic and EMG Responses to Pelvis and Leg Assistance Force during Treadmill Walking in Children with Cerebral Palsy

机译:运动性和肌电图对骨性瘫痪儿童跑步机行走时骨盆和腿部辅助力量的反应

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摘要

Treadmill training has been used for improving locomotor function in children with cerebral palsy (CP), but the functional gains are relatively small, suggesting a need to improve current paradigms. The understanding of the kinematic and EMG responses to forces applied to the body of subjects during treadmill walking is crucial for improving current paradigms. The objective of this study was to determine the kinematics and EMG responses to the pelvis and/or leg assistance force. Ten children with spastic CP were recruited to participate in this study. A controlled assistance force was applied to the pelvis and/or legs during stance and swing phase of gait through a custom designed robotic system during walking. Muscle activities and spatial-temporal gait parameters were measured at different loading conditions during walking. In addition, the spatial-temporal gait parameters during overground walking before and after treadmill training were also collected. Applying pelvis assistance improved step height and applying leg assistance improved step length during walking, but applying leg assistance also reduced muscle activation of ankle flexor during the swing phase of gait. In addition, step length and self-selected walking speed significantly improved after one session of treadmill training with combined pelvis and leg assistance.
机译:跑步机训练已用于改善脑瘫(CP)儿童的运动功能,但功能增益相对较小,表明需要改善当前的范例。运动学和肌电图对跑步机行走过程中施加到受试者身体的力的反应的理解对于改善当前范例至关重要。这项研究的目的是确定运动学和肌电图对骨盆和/或腿部辅助力量的反应。招募了十名患有痉挛性CP的儿童参加这项研究。在步态的姿势和摆动阶段,通过定制的机器人系统在步行过程中将受控的辅助力施加到骨盆和/或腿上。在步行过程中的不同负荷条件下测量肌肉活动和时空步态参数。此外,还收集了跑步机训练前后的地面行走过程中的时空步态参数。在行走过程中,应用骨盆辅助可以提高步长,而使用腿部辅助可以提高步长,但是在步态摆动阶段,应用腿辅助还可以减少踝屈肌的肌肉激活。此外,在结合骨盆和腿部辅助设备的一台跑步机训练后,步长和自行选择的步行速度得到了显着改善。

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