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Center of mass adaptations and its interaction between the trunk and lower-extremity during exoskeleton walking

机译:在外骨骼行走期间,大规模调整中心及其在躯干和下肢之间的相互作用

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The goal of this study is to dynamically assess the posture and balance of individuals with spinal cord injury and able-bodied controls during robotic-assisted gait, using the EksoGT? and ReWalk?, by examining their 3-D whole body, trunk and lower-extremity CoM excursions and their sagittal trunk lean angle during baseline and post-training (>100 hours). At baseline, there were strong differences (p<;0.05) between the devices where CoM excursions, root-mean-squared-errors between the trunk and lower-extremity CoMs and a trend for significance in trunk lean angle were much greater in the ReWalk? than EksoGT?. These differences further increased post-training, particularly in the EksoGT?.
机译:本研究的目的是在机器人辅助步态中动态地评估脊髓损伤和能够体内控制的个体的姿势和平衡,使用eksogt?并重新走动?,在基线和训练后(> 100小时)中检查他们的3-D全身,躯干和下肢偏见和他们的矢状干线角。在基线时,在射门偏移的装置之间存在强烈的差异(p <; 0.05),行李箱和下肢COM之间的根均方平方误差和行李箱贫角度的显着性趋势在更大的情况下更大还是比eksogt?这些差异进一步增加了训练后,特别是在eksogt ?.

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