Modeling and simulation of musculoskeletal system of human lower limb based on tensegrity structure

Comput Methods Biomech Biomed Engin. 2019 Dec;22(16):1282-1293. doi: 10.1080/10255842.2019.1661389. Epub 2019 Sep 5.

Abstract

In this paper, a mechanical model of the skeletal muscle of human lower limb system is established by using the Hill muscle model and kinetic equation of the movement of lower extremities according to the attachment positions of skeletal muscle. State vector and neural control are delineated by the direct configuration method. Changes of gait and skeletal muscle stress during walking process are analyzed with energy consumption as objective function. Results illustrate that simulation data are in good agreement with actual walking gait data. Feasibility and correctness of the designed model and control behavior of skeletal muscle tension structure are also verified.

Keywords: Tensegrity structure; gait simulation; lower limb model; motion analysis.

MeSH terms

  • Biomechanical Phenomena
  • Computer Simulation*
  • Gait / physiology
  • Humans
  • Kinetics
  • Lower Extremity / physiology*
  • Models, Biological*
  • Muscle, Skeletal / physiology
  • Musculoskeletal System / anatomy & histology*