DocumentCode :
259992
Title :
A novel muscle synergy extraction method to explain the equilibrium-point trajectory and endpoint stiffness during human upper-limb movements on a horizontal plane
Author :
Uno, Kanna ; Oku, Takanori ; Phatiwuttipat, Pipatthana ; Koba, Keitaro ; Yamashita, Yuto ; Murakami, Kenta ; Uemura, Mitsunori ; Hirai, Hiroaki ; Miyazaki, Fumio
Author_Institution :
Dept. of Mech. Sci. & Bioeng., Osaka Univ., Toyonaka, Japan
fYear :
2014
fDate :
12-15 Aug. 2014
Firstpage :
621
Lastpage :
626
Abstract :
Based on the idea of synergy to explore the building blocks of movements, this study focused on the muscle space for reaching movements by human upper limbs on a horizontal plane to estimate the relationship among muscle synergies, equilibrium-point (EP) trajectories, and endpoint stiffness in two ways: (1) a novel estimation method that analyzes electromyographic signals under the concept of agonist-antagonist (A-A) muscle pairs and (2) a conventional estimation method that uses mechanical perturbations. The experimental results suggest that (1) muscle activities of reaching movements by human upper limbs are represented by only three functional muscle synergies; (2) each muscle synergy balances the coacti-vations of A-A muscle pairs; (3) two of the muscle synergies are invariant bases that form an EP trajectory described in polar coordinates centered on a shoulder joint, where one is a composite unit for radial movement and the other is for angular movement; and (4) the third muscle synergy is the invariant basis for additional adjustment of the endpoint stiffness and has some influence on the direction and size of the endpoint stiffness ellipse.
Keywords :
elastic constants; electromyography; gait analysis; A-A muscle pair coactivations; EP trajectory; agonist-antagonist muscle pairs; angular movement; conventional estimation method; electromyographic signals; endpoint stiffness ellipse direction; endpoint stiffness ellipse size; equilibrium-point trajectories; equilibrium-point trajectory; functional muscle synergies; horizontal plane; human upper limbs; human upper-limb movements; mechanical perturbations; movement building blocks; muscle activities; muscle space; muscle synergy extraction method; polar coordinates; radial movement; reaching movements; shoulder joint; Electromyography; Joints; Muscles; Perturbation methods; Shoulder; Trajectory; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Robotics and Biomechatronics (2014 5th IEEE RAS & EMBS International Conference on
Conference_Location :
Sao Paulo
ISSN :
2155-1774
Print_ISBN :
978-1-4799-3126-2
Type :
conf
DOI :
10.1109/BIOROB.2014.6913847
Filename :
6913847
Link To Document :
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