Please use this identifier to cite or link to this item: https://dora.health.qld.gov.au/qldresearchjspui/handle/1/2787
Title: The effects of electromyography-assisted modelling in estimating musculotendon forces during gait in children with cerebral palsy
Authors: van der Krogt, M. M.
Harlaar, J.
Pizzolato, C.
Lloyd, D. G.
Carty, Christopher 
Veerkamp, K.
Schallig, W.
Issue Date: 2019
Source: 92 , 2019, p. 45-53
Pages: 45-53
Journal: Journal of Biomechanics
Abstract: Neuro-musculoskeletal modelling can provide insight into the aberrant muscle function during walking in those suffering cerebral palsy (CP). However, such modelling employs optimization to estimate muscle activation that may not account for disturbed motor control and muscle weakness in CP. This study evaluated different forms of neuro-musculoskeletal model personalization and optimization to estimate musculotendon forces during gait of nine children with CP (GMFCS I-II) and nine typically developing (TD) children. Data collection included 3D-kinematics, ground reaction forces, and electromyography (EMG) of eight lower limb muscles. Four different optimization methods estimated muscle activation and musculotendon forces of a scaled-generic musculoskeletal model for each child walking, i.e. (i) static optimization that minimized summed-excitation squared; (ii) static optimization with maximum isometric muscle forces scaled to body mass; (iii) an EMG-assisted approach using optimization to minimize summed-excitation squared while reducing tracking errors of experimental EMG-linear envelopes and joint moments; and (iv) EMG-assisted with musculotendon model parameters first personalized by calibration. Both static optimization approaches showed a relatively low model performance compared to EMG envelopes. EMG-assisted approaches performed much better, especially in CP, with only a minor mismatch in joint moments. Calibration did not affect model performance significantly, however it did affect musculotendon forces, especially in CP. A model more consistent with experimental measures is more likely to yield more physiologically representative results. Therefore, this study highlights the importance of calibrated EMG-assisted modelling when estimating musculotendon forces in TD children and even more so in children with CP.L20020305602019-06-04
2019-07-12
DOI: 10.1016/j.jbiomech.2019.05.026
Resources: https://www.embase.com/search/results?subaction=viewrecord&id=L2002030560&from=exporthttp://dx.doi.org/10.1016/j.jbiomech.2019.05.026 |
Keywords: human;kinematics;male;muscle isometric contraction;musculoskeletal system parameters;musculotendon force;priority journal;process optimization;female;electromyography;controlled study;clinical article;child;cerebral palsy;calibration;gait;ground reaction force;articlebody mass
Type: Article
Appears in Sites:Children's Health Queensland Publications

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