4.5 Article

Tuning of Muscle Synergies During Walking Along Rectilinear and Curvilinear Trajectories in Humans

Journal

ANNALS OF BIOMEDICAL ENGINEERING
Volume 45, Issue 5, Pages 1204-1218

Publisher

SPRINGER
DOI: 10.1007/s10439-017-1802-z

Keywords

Locomotion; Muscle synergies; Electromyography; Curvilinear walking

Funding

  1. Italian Ministry of Education, University and Research [2010R277FT]
  2. Italian Ministry of Health [GR-2010-2312228]

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The aim of this study was to develop a methodology based on muscle synergies to investigate whether rectilinear and curvilinear walking shared the same neuro-motor organization, and how this organization was fine-tuned by the walking condition. Thirteen healthy subjects walked on rectilinear and curvilinear paths. Electromyographic data from thirteen back and lower-limb muscles were acquired, together with kinematic data using inertial sensors. Four macroscopically invariant muscle synergies, extracted through non-negative matrix factorization, proved a shared modular organization across conditions. The fine-tuning of muscle synergies was studied through non-negative matrix reconstruction, applied by fixing muscle weights or activation profiles to those of the rectilinear condition. The activation profiles tended to be recruited for a longer period and with a larger amplitude during curvilinear walking. The muscles of the posterior side of the lower limb were those mainly influenced by the fine-tuning, with the muscles inside the rotation path being more active than the outer muscles. This study shows that rectilinear and curvilinear walking share a unique motor command. However, a fine-tuning in muscle synergies is introduced during curvilinear conditions, adapting the kinematic strategy to the new biomechanical needs.

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