Application of ultrasound to monitor in vivo residual bone movement within transtibial prosthetic sockets
Jonkergouw, Niels and Prins, Maarten R. and Donse, Daniël and van der Wurff, Peter and van Dieën, Jaap H. and Buis, Arjan and Houdijk, Han (2024) Application of ultrasound to monitor in vivo residual bone movement within transtibial prosthetic sockets. Scientific Reports, 14 (1). 9725. ISSN 2045-2322 (https://doi.org/10.1038/s41598-024-60353-7)
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Transtibial prosthetic users do often struggle to achieve an optimal prosthetic fit, leading to residual limb pain and stump-socket instability. Prosthetists face challenges in objectively assessing the impact of prosthetic adjustments on residual limb loading. Understanding the mechanical behaviour of the pseudo-joint formed by the residual bone and prosthesis may facilitate prosthetic adjustments and achieving optimal fit. This study aimed to assess the feasibility of using B-mode ultrasound to monitor in vivo residual bone movement within a transtibial prosthetic socket during different stepping tasks. Five transtibial prosthesis users participated, and ultrasound images were captured using a Samsung HM70A system during five dynamic conditions. Bone movement relative to the socket was quantified by tracking the bone contour using Adobe After-Effect. During the study a methodological adjustment was made to improve data quality, and the first two participants were excluded from analysis. The remaining three participants exhibited consistent range of motion, with a signal to noise ratio ranging from 1.12 to 2.59. Medial–lateral and anterior–posterior absolute range of motion varied between 0.03 to 0.88 cm and 0.14 to 0.87 cm, respectively. This study demonstrated that it is feasible to use B-mode ultrasound to monitor in vivo residual bone movement inside an intact prosthetic socket during stepping tasks.
ORCID iDs
Jonkergouw, Niels, Prins, Maarten R., Donse, Daniël, van der Wurff, Peter, van Dieën, Jaap H., Buis, Arjan ORCID: https://orcid.org/0000-0003-3947-293X and Houdijk, Han;-
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Item type: Article ID code: 88995 Dates: DateEvent27 April 2024Published22 April 2024Accepted7 December 2023SubmittedSubjects: Technology > Engineering (General). Civil engineering (General) > Bioengineering Department: Faculty of Engineering > Biomedical Engineering
Strategic Research Themes > Health and WellbeingDepositing user: Pure Administrator Date deposited: 26 Apr 2024 13:38 Last modified: 20 Nov 2024 13:40 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/88995