Simulation of Lower Limb Muscle Activation Using Running Shoes with Different Heel-to-Toe Drops Using Opensim

Author:

Quan Wenjing12,Gao Linna1,Xu Datao12ORCID,Zhou Huiyu13,Korim Tamás2,Shao Shirui1,Baker Julien S.4ORCID,Gu Yaodong1ORCID

Affiliation:

1. Faculty of Sports Science, Ningbo University, Ningbo 315211, China

2. Department of Materials Engineering, Faculty of Engineering, University of Pannonia, H-8201 Veszprem, Hungary

3. School of Health and Life Sciences, University of the West of Scotland, Glasgow G72 0LH, UK

4. Centre for Health and Exercise Science Research, Department of Sport, Physical Education and Health, Hong Kong Baptist University, Hong Kong 999077, China

Abstract

Background: Although numerous studies have been conducted to investigate the acute effects of shoe drops on running kinematics and kinetic variables, their effects on muscle forces remain unknown. Thus, the primary aim of this study was to compare the muscle force, kinematics, and kinetic variables of habitually rearfoot runners with heel-to-toe drops of negative 8 mm shoes (minimalist shoes) and positive 9 mm shoes (normal shoes) during the running stance phase by using musculoskeletal modeling and simulation techniques. Methods: Experimental data of lower limb kinematics, ground reaction force, and muscle activation from 16 healthy runners with rearfoot strike patterns were collected and analyzed in OpenSim. Using Matlab, the statistical parameter mapping paired t-test was used to compare the joint angle, moment, and muscle force waveform. Results: The results revealed differences in the sagittal ankle and hip angles and sagittal knee moments between the different heel-to-toe drops of running shoes. Specifically, it showed that the negative 8 mm running shoes led to significantly smaller values than the positive 9 mm running shoes in terms of the angle of ankle dorsiflexion, ankle eversion, knee flexion, hip flexion, and hip internal and hip external rotation. The peak ankle dorsiflexion moment, ankle plantarflexion moment, ankle eversion moment, knee flexion moment, knee abduction moment, and knee internal rotation also decreased obviously with the minimalist running shoes, while the lateral gastrocnemius, Achilleas tendon, and extensor hallucis longus muscles were obviously greater in the minimalist shoes compared to normal shoes. The vastus medialis, vastus lateralis and extensor digitorum longus muscles force were smaller in the minimalist shoes. Conclusions: Runners may shift to a midfoot strike pattern when wearing negative running shoes. High muscle forces in the gastrocnemius lateral, Achilleas tendon, and flexor hallucis longus muscles may also indicate an increased risk of Achilleas tendonitis and ankle flexor injuries.

Funder

Zhejiang Provincial Philosophy and Social Sciences Planning Project

Key R&D Program of Zhejiang Province China

Zhejiang Province Science Fund for Distinguished Young Scholars

Philosophy and Social Sciences Project of Zhejiang Province, China

Public Welfare Science and Technology Project of Ningbo, China

Fundamental Research Funds for the Provincial Universities of Zhejiang

K.C. Wong Magna Fund in Ningbo University

Publisher

MDPI AG

Subject

Health Information Management,Health Informatics,Health Policy,Leadership and Management

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