Journal of NeuroEngineering and Rehabilitation | |
Overground walking patterns after chronic incomplete spinal cord injury show distinct response patterns to unloading | |
Georg Rauter1  Lea Awai2  Luca Renato Traini2  Marc Bolliger2  Martina Franz2  Armin Curt2  Christopher Schmidt Easthope2  | |
[1] BIROMED-Lab, Department of Biomedical Engineering, University Basel;Spinal Cord Injury Center, Balgrist University Hospital; | |
关键词: Body weight support; Gait pattern; Spinal cord injury; Walking; Unloading; | |
DOI : 10.1186/s12984-018-0436-1 | |
来源: DOAJ |
【 摘 要 】
Abstract Background Body weight support (BWS) is often provided to incomplete spinal cord injury (iSCI) patients during rehabilitation to enable gait training before full weight-bearing is recovered. Emerging robotic devices enable BWS during overground walking, increasing task-specificity of the locomotor training. However, in contrast to a treadmill setting, there is little information on how unloading is integrated into overground locomotion. We investigated the effect of a transparent multi-directional BWS system on overground walking patterns at different levels of unloading in individuals with chronic iSCI (CiSCI) compared to controls. Methods Kinematics of 12 CiSCI were analyzed at six different BWS levels from 0 to 50% body weight unloading during overground walking at 2kmh− 1 and compared to speed-matched controls. Results In controls, temporal parameters, single joint trajectories, and intralimb coordination responded proportionally to the level of unloading, while spatial parameters remained unaffected. In CiSCI, unloading induced similar changes in temporal parameters. CiSCI, however, did not adapt their intralimb coordination or single joint trajectories to the level of unloading. Conclusions The findings revealed that continuous, dynamic unloading during overground walking results in subtle and proportional gait adjustments corresponding to changes in body load. CiSCI demonstrated diminished responses in specific domains of gait, indicating that their altered neural processing impeded the adjustment to environmental constraints. CiSCI retain their movement patterns under overground unloading, indicating that this is a viable locomotor therapy tool that may also offer a potential window on the diminished neural control of intralimb coordination.
【 授权许可】
Unknown