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Muscle synergy-informed neuromusculoskeletal modelling to estimate knee contact forces in children with cerebral palsy.
Rabbi, Mohammad Fazle; Davico, Giorgio; Lloyd, David G; Carty, Christopher P; Diamond, Laura E; Pizzolato, Claudio.
Afiliação
  • Rabbi MF; Griffith Centre of Biomedical and Rehabilitation Engineering (GCORE), Gold Coast, and Advanced Design and Prototyping Technologies Institute, Gold Coast, QLD, 4222, Australia.
  • Davico G; School of Health Sciences and Social Work, Griffith University, Gold Coast, QLD, 4222, Australia.
  • Lloyd DG; Department of Industrial Engineering, Alma Mater Studiorum, University of Bologna, 40136, Bologna, Italy.
  • Carty CP; Medical Technology Lab, IRCCS Istituto Ortopedico Rizzoli, Bologna, Italy.
  • Diamond LE; Griffith Centre of Biomedical and Rehabilitation Engineering (GCORE), Gold Coast, and Advanced Design and Prototyping Technologies Institute, Gold Coast, QLD, 4222, Australia.
  • Pizzolato C; School of Health Sciences and Social Work, Griffith University, Gold Coast, QLD, 4222, Australia.
Biomech Model Mechanobiol ; 23(3): 1077-1090, 2024 Jun.
Article em En | MEDLINE | ID: mdl-38459157
ABSTRACT
Cerebral palsy (CP) includes a group of neurological conditions caused by damage to the developing brain, resulting in maladaptive alterations of muscle coordination and movement. Estimates of joint moments and contact forces during locomotion are important to establish the trajectory of disease progression and plan appropriate surgical interventions in children with CP. Joint moments and contact forces can be estimated using electromyogram (EMG)-informed neuromusculoskeletal models, but a reduced number of EMG sensors would facilitate translation of these computational methods to clinics. This study developed and evaluated a muscle synergy-informed neuromusculoskeletal modelling approach using EMG recordings from three to four muscles to estimate joint moments and knee contact forces of children with CP and typically developing (TD) children during walking. Using only three to four experimental EMG sensors attached to a single leg and leveraging an EMG database of walking data of TD children, the synergy-informed approach estimated total knee contact forces comparable to those estimated by EMG-assisted approaches that used 13 EMG sensors (children with CP, n = 3, R2 = 0.95 ± 0.01, RMSE = 0.40 ± 0.14 BW; TD controls, n = 3, R2 = 0.93 ± 0.07, RMSE = 0.19 ± 0.05 BW). The proposed synergy-informed neuromusculoskeletal modelling approach could enable rapid evaluation of joint biomechanics in children with unimpaired and impaired motor control within a clinical environment.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Paralisia Cerebral / Eletromiografia / Joelho / Articulação do Joelho Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Paralisia Cerebral / Eletromiografia / Joelho / Articulação do Joelho Idioma: En Ano de publicação: 2024 Tipo de documento: Article