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Functional electrical therapy for assisted treadmill training: use of passive dynamics

机译:辅助跑步机训练的功能性电疗法:使用被动动力学

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The purpose of this study was to assess the feasibility of a new technique for assisted treadmill training in incomplete spinal cord injury using surface functional electrical stimulation (FES). A limitation of surface FES is that hip flexors cannot be directly stimulated. By having the subject walk downhill on a treadmill while supported in an overhead harness, the passive dynamics of the legs can be exploited, and gravitational forces will facilitate hip flexion. A computer model for the swing phase of gait was developed. It was used to optimize the torque profiles for the knee and ankle, while eliminating the hip flexor moment. To determine the appropriate stimulation current that would be applied by the neuroprosthesis during downhill walking, the torque at the knee was measured as it moved through its range of motion for a variety of applied currents and a variety of speeds. These data allowed the torque versus time plots to be translated into current versus time, which would be applied by the neuroprosthesis to generate locomotion on the inclined treadmill. The implementation of this new technique will be the subject of future study.
机译:这项研究的目的是评估使用表面功能性电刺激(FES)在不完全脊髓损伤中辅助跑步机训练的新技术的可行性。表面FES的局限性在于不能直接刺激髋屈肌。通过让受试者在高架安全带的支撑下在跑步机上下坡行走,可以利用腿部的被动动力,而重力将有助于髋部屈曲。建立了步态摆动阶段的计算机模型。它用于优化膝盖和脚踝的扭矩曲线,同时消除了髋屈肌力矩。为了确定下坡步行时神经假体将施加的适当刺激电流,在各种施加电流和各种速度下,当膝盖在其运动范围内移动时,测量膝盖处的扭矩。这些数据允许将扭矩与时间的关系图转换为电流与时间的关系,这将由神经假体应用以在倾斜的跑步机上产生运动。这项新技术的实施将是未来研究的主题。

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