Li Zhan, Liu Huxian, Yin Ziguang, Chen Kejia
School of Automation Engineering, University of Electronic Science and Technology of China, Chengdu, China.
Front Neurosci. 2019 Jan 29;12:1050. doi: 10.3389/fnins.2018.01050. eCollection 2018.
Muscle synergy reflects inherent coordination patterns of muscle groups as the human body finishes required movements. It may be still unknown whether the original muscle synergy of subjects may alter or not when exoskeletons are put on during their normal walking activities. This paper reports experimental results and presents analysis on muscle synergy from 17 able-bodied subjects with and without lower-limb exoskeletons when they performed normal walking tasks. The electromyography (EMG) signals of the tibialis anterior (TA), soleus (SOL), lateral gastrocnemius (GAS), vastus medialis oblique (VMO), vastus lateralis oblique (VLO), biceps femoris (BICE), semitendinosus (SEMI), and rectus femoris (RECT) muscles were extracted to obtain the muscle synergy. The quantitative results show that, when the subjects wore exoskeletons to walk normally, their mean muscle synergy changed from when they walked without exoskeletons. When the subjects walked with and without exoskeletons, statistically significant differences on sub-patterns of the muscles' synergies between the corresponding two groups could be found.
肌肉协同作用反映了人体完成所需动作时肌肉群的内在协调模式。当外骨骼在正常行走活动中穿戴时,受试者原有的肌肉协同作用是否会改变仍不清楚。本文报告了实验结果,并对17名健全受试者在穿戴和不穿戴下肢外骨骼进行正常行走任务时的肌肉协同作用进行了分析。提取胫骨前肌(TA)、比目鱼肌(SOL)、腓外侧肌(GAS)、股内侧斜肌(VMO)、股外侧斜肌(VLO)、股二头肌(BICE)、半腱肌(SEMI)和股直肌(RECT)的肌电图(EMG)信号以获得肌肉协同作用。定量结果表明,当受试者穿戴外骨骼正常行走时,其平均肌肉协同作用与不穿戴外骨骼行走时有所不同。当受试者穿戴和不穿戴外骨骼行走时,相应两组之间肌肉协同作用的子模式存在统计学上的显著差异。