首页> 外文会议>2017 International Conference on Rehabilitation Robotics >An integrated gait rehabilitation training based on Functional Electrical Stimulation cycling and overground robotic exoskeleton in complete spinal cord injury patients: Preliminary results
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An integrated gait rehabilitation training based on Functional Electrical Stimulation cycling and overground robotic exoskeleton in complete spinal cord injury patients: Preliminary results

机译:基于功能性电刺激循环和地面机器人外骨骼的完整步态康复训练,对完全脊髓损伤的患者:初步结果

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The aim of this study is to investigate the effects of an integrated gait rehabilitation training based on Functional Electrical Stimulation (FES)-cycling and overground robotic exoskeleton in a group of seven complete spinal cord injury patients on spasticity and patient-robot interaction. They underwent a robot-assisted rehabilitation training based on two phases: n=20 sessions of FES-cycling followed by n= 20 sessions of robot-assisted gait training based on an overground robotic exoskeleton. The following clinical outcome measures were used: Modified Ashworth Scale (MAS), Numerical Rating Scale (NRS) on spasticity, Penn Spasm Frequency Scale (PSFS), Spinal Cord Independence Measure Scale (SCIM), NRS on pain and International Spinal Cord Injury Pain Data Set (ISCI). Clinical outcome measures were assessed before (T0) after (T1) the FES-cycling training and after (T2) the powered overground gait training. The ability to walk when using exoskeleton was assessed by means of 10 Meter Walk Test (10MWT), 6 Minute Walk Test (6MWT), Timed Up and Go test (TUG), standing time, walking time and number of steps. Statistically significant changes were found on the MAS score, NRS-spasticity, 6MWT, TUG, standing time and number of steps. The preliminary results of this study show that an integrated gait rehabilitation training based on FES-cycling and overground robotic exoskeleton in complete SCI patients can provide a significant reduction of spasticity and improvements in terms of patient-robot interaction.
机译:这项研究的目的是研究基于功能性电刺激(FES)循环和地面机器人外骨骼的综合步态康复训练对7名完全脊髓损伤患者的痉挛和机器人交互作用的影响。他们分两个阶段进行了机器人辅助的康复训练:n = 20次FES循环训练,然后n = 20次基于地面机器人外骨骼的机器人步态训练。使用以下临床结局指标:改良的Ashworth量表(MAS),痉挛程度数字量表(NRS),Penn痉挛频率量表(PSFS),脊髓独立性量表(SCIM),疼痛和非国际性脊髓损伤疼痛的NRS。数据集(ISCI)。在FES骑行训练之前(T1)之后(T1)和电动地面步态训练(T2)之后(T2)评估临床结果指标。通过使用10米步行测试(10MWT),6分钟步行测试(6MWT),计时走步测试(TUG),站立时间,步行时间和步数来评估使用外骨骼时的步行能力。在MAS评分,NRS痉挛,6MWT,TUG,站立时间和步数上发现了统计学上的显着变化。这项研究的初步结果表明,在完整的SCI患者中,基于FES循环和地面机器人外骨骼的综合步态康复训练可以显着减少痉挛并改善患者与机器人之间的相互作用。

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