Ergonomic Assessment of a Lower-Limb Exoskeleton through Electromyography and Anybody Modeling System

Int J Environ Res Public Health. 2022 Jul 1;19(13):8088. doi: 10.3390/ijerph19138088.

Abstract

The aim of this study was to determine the muscle load reduction of the upper extremities and lower extremities associated with wearing an exoskeleton, based on analyses of muscle activity (electromyography: EMG) and the AnyBody Modeling System (AMS). Twenty healthy males in their twenties participated in this study, performing bolting tasks at two working heights (60 and 85 cm). The muscle activities of the upper trapezius (UT), middle deltoid (MD), triceps brachii (TB), biceps brachii (BB), erector spinae (ES), biceps femoris (BF), rectus femoris (RF), and tibialis anterior (TA) were measured by EMG and estimated by AMS, respectively. When working at the 60 cm height with the exoskeleton, the lower extremity muscle (BF, RF, TA) activities of EMG and AMS decreased. When working at the 85 cm height, the lower extremity muscle activity of EMG decreased except for TA, and those of AMS decreased except for RF. The muscle activities analyzed by the two methods showed similar patterns, in that wearing the exoskeleton reduced loads of the lower extremity muscles. Therefore, wearing an exoskeleton can be recommended to prevent an injury. As the results of the two methods show a similar tendency, the AMS can be used.

Keywords: AnyBody Modeling System; CEX; drilling task; lower-limb exoskeleton; work-related musculoskeletal disorders; working height.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Electromyography / methods
  • Ergonomics
  • Exoskeleton Device*
  • Humans
  • Lower Extremity / physiology
  • Male
  • Muscle, Skeletal / physiology
  • Superficial Back Muscles*

Grants and funding

This work was carried out with the support of “Cooperative Research Program for Agricultural Science and Technology Development (Project No. PJ01709901)” Rural Development Administration, Korea.