Estimation of Continuous Joint Angles of Upper Limb Based on sEMG by Using GA-Elman Neural Network
The estimation of continuous and simultaneous multijoint angle based on surface electromyography (sEMG) signal is of considerable significance in rehabilitation practice. However, there are few studies on the continuous joint angle of multiple joints at present. In this paper, the wavelet packet ene...
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          | Published in | Mathematical problems in engineering Vol. 2020; no. 2020; pp. 1 - 11 | 
|---|---|
| Main Authors | , , , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        Cairo, Egypt
          Hindawi Publishing Corporation
    
        2020
     Hindawi John Wiley & Sons, Inc  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 1024-123X 1026-7077 1563-5147 1563-5147  | 
| DOI | 10.1155/2020/4065351 | 
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| Abstract | The estimation of continuous and simultaneous multijoint angle based on surface electromyography (sEMG) signal is of considerable significance in rehabilitation practice. However, there are few studies on the continuous joint angle of multiple joints at present. In this paper, the wavelet packet energy entropy (WPEE) of the special subspace was investigated as a feature of the sEMG signal. An Elman neural network optimized by genetic algorithm (GA) was established to estimate the joint angle of shoulder and elbow. First, the accuracy of the method is verified by estimating the angle of the shoulder joint. Then, this method was used to simultaneously and continuously estimate the shoulder and elbow joint angle. Six subjects flexed and extended the upper limbs according to the intended movements of the experiment. The results show that this method can obtain a decent performance with a RMSE of 3.4717 and R2 of 0.8283 in shoulder movement and with a RMSE of 4.1582 and R2 of 0.8114 in continuous synchronous movement of the shoulder and elbow. | 
    
|---|---|
| AbstractList | The estimation of continuous and simultaneous multijoint angle based on surface electromyography (sEMG) signal is of considerable significance in rehabilitation practice. However, there are few studies on the continuous joint angle of multiple joints at present. In this paper, the wavelet packet energy entropy (WPEE) of the special subspace was investigated as a feature of the sEMG signal. An Elman neural network optimized by genetic algorithm (GA) was established to estimate the joint angle of shoulder and elbow. First, the accuracy of the method is verified by estimating the angle of the shoulder joint. Then, this method was used to simultaneously and continuously estimate the shoulder and elbow joint angle. Six subjects flexed and extended the upper limbs according to the intended movements of the experiment. The results show that this method can obtain a decent performance with a
RMSE
of 3.4717 and
R
2
of 0.8283 in shoulder movement and with a
RMSE
of 4.1582 and
R
2
of 0.8114 in continuous synchronous movement of the shoulder and elbow. The estimation of continuous and simultaneous multijoint angle based on surface electromyography (sEMG) signal is of considerable significance in rehabilitation practice. However, there are few studies on the continuous joint angle of multiple joints at present. In this paper, the wavelet packet energy entropy (WPEE) of the special subspace was investigated as a feature of the sEMG signal. An Elman neural network optimized by genetic algorithm (GA) was established to estimate the joint angle of shoulder and elbow. First, the accuracy of the method is verified by estimating the angle of the shoulder joint. Then, this method was used to simultaneously and continuously estimate the shoulder and elbow joint angle. Six subjects flexed and extended the upper limbs according to the intended movements of the experiment. The results show that this method can obtain a decent performance with a RMSE of 3.4717 and R2 of 0.8283 in shoulder movement and with a RMSE of 4.1582 and R2 of 0.8114 in continuous synchronous movement of the shoulder and elbow.  | 
    
| Author | Wang, Junhong Hao, Qiqi Xi, Xugang Wang, Huijiao Cao, Jiuwen Xue, Anke  | 
    
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| CitedBy_id | crossref_primary_10_3934_mbe_2023152 crossref_primary_10_1109_ACCESS_2020_3047828  | 
    
| Cites_doi | 10.1016/j.irbm.2019.07.002 10.1016/j.apergo.2016.12.001 10.1109/tie.2019.2946536 10.3389/fnins.2017.00480 10.3390/s17030582 10.1016/j.sigpro.2005.07.032 10.1016/j.amc.2017.02.031 10.1109/tnsre.2018.2832657 10.1016/j.patcog.2016.01.012 10.1109/tnsre.2016.2639527 10.1016/j.clinph.2017.04.028 10.1007/s11063-016-9530-1 10.1016/s1672-6529(16)60398-0 10.1007/s00429-013-0656-x 10.1016/j.procs.2012.09.041 10.1109/tie.2014.2387337 10.1016/j.bspc.2018.04.011 10.1177/1545968319826053 10.1299/jamdsm.2018jamdsm0031 10.1177/0269215516642606 10.3390/s18020663 10.3389/fnins.2017.00280 10.1007/s00521-017-3076-7 10.1016/j.bspc.2014.08.004 10.1016/j.apmr.2019.02.003 10.1186/s12984-015-0015-7 10.1016/j.bspc.2017.08.015  | 
    
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| Copyright | Copyright © 2020 Junhong Wang et al. Copyright © 2020 Junhong Wang et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. http://creativecommons.org/licenses/by/4.0  | 
    
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| SubjectTerms | Accuracy Decomposition Discriminant analysis Elbow (anatomy) Electromyography Experiments Genetic algorithms Human body Neural networks Principal components analysis Rehabilitation Shoulder Wavelet transforms  | 
    
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| Title | Estimation of Continuous Joint Angles of Upper Limb Based on sEMG by Using GA-Elman Neural Network | 
    
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