Paediatric prosthetic knee design: the technical requirements of a swing phase control mechanism are correlated with parameters of childhood growth
File(s)Accepted version for Spiral.pdf (1.65 MB)
Accepted version
Author(s)
Edgar, Caitlin
Jones, Richard
Bull, Anthony
Type
Journal Article
Abstract
Objective: There is a lack of innovation in affordable prosthetic knee joints for children. One significant reason is the absence of technical requirements which consider the foundation of childhood: growth. This study aims to develop and use a modelling tool to determine the technical requirements throughout childhood growth for one prosthetic knee design feature, a swing phase control mechanism (SPCM). Methods: 3D gait data of 31 able-bodied children across a range of physical maturities were analyzed. For each participant 2 models were created from a validated paediatric able-bodied musculoskeletal model. The model was first linearly scaled, then a corresponding unilateral right knee-disarticulation amputation model produced by removing segments below the knee and replacing with prosthetic componentry. Long established low-cost prosthetic componentry and a novel polycentric knee were implemented. For each participant, inverse dynamics were conducted and the SPCM torque requirements defined. Results: Prosthetic knee SPCM torque requirements were significantly less than the able-bodied knee to emulate able-bodied gait at free speed: 17.9% (± 10.2) and 66.3% (± 17.0) reduction in maximum extension and flexion torque, respectively. Maximum knee extension torque showed the strongest negative correlation with intact body mass (ρ = -0.6251) whereas flexion torque showed the strongest correlation with height (ρ = 0.6611). Corresponding linear regression fits produced RMSE of 1.91and 1.73 Nm, respectively. Results were also determined for slow and fast speeds. Conclusion: The torque requirements of an affordable paediatric prosthetic knee SPCM are defined and found to strongly correlate with parameters of childhood growth (body mass, height, and age). Significance: Current results recommend low-cost paediatric prosthetic SPCM designs can be tailored to accommodate growth. The creation of musculoskeletal models facilitate multiple future studies.
Date Issued
2024-12-01
Date Acceptance
2024-07-09
Citation
IEEE Transactions on Biomedical Engineering, 2024, 71 (12), pp.3593-3601
ISSN
0018-9294
Publisher
Institute of Electrical and Electronics Engineers
Start Page
3593
End Page
3601
Journal / Book Title
IEEE Transactions on Biomedical Engineering
Volume
71
Issue
12
Copyright Statement
Copyright © 2024 IEEE. This is the author’s accepted manuscript made available under a CC-BY licence in accordance with Imperial’s Research Publications Open Access policy (www.imperial.ac.uk/oa-policy)
License URL
Identifier
https://ieeexplore.ieee.org/abstract/document/10612240
Publication Status
Published
Date Publish Online
2024-07-26