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Updated: Aug 19, 2026

Lower Limb Biomechanical Analysis of Healthy Participants
Published on: April 15, 2020
Dynamic analysis of load carriage biomechanics during level walking
Lei Ren1, Richard K Jones, David Howard
1Centre for Rehabilitation and Human Performance Research, University of Salford, Salford M5 4WT, UK.
Abstract:
This paper describes an investigation into the biomechanical effects of load carriage dynamics on human locomotion performance. A whole body, inverse dynamics gait model has been developed which uses only kinematic input data to define the gait cycle. To provide input data, three-dimensional gait measurements have been conducted to capture whole body motion while carrying a backpack. A nonlinear suspension model is employed to describe the backpack dynamics. The model parameters for a particular backpack system can be identified using a dynamic load carriage test-rig. Biomechanical assessments have been conducted based on combined gait and pack simulations. It was found that the backpack suspension stiffness and damping have little effect on human locomotion energetics. However, decreasing suspension stiffness offers important biomechanical advantages. The peak values of vertical pack force, acting on the trunk, and lower limb joint loads are all moderated. This would reduce shoulder strap pressures and the risk of injury when heavy loads are carried.
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