Literature DB >> 18495134

Internal mechanical conditions in the soft tissues of a residual limb of a trans-tibial amputee.

S Portnoy1, Z Yizhar, N Shabshin, Y Itzchak, A Kristal, Y Dotan-Marom, I Siev-Ner, A Gefen.   

Abstract

Most trans-tibial amputation (TTA) patients use a prosthesis to retain upright mobility capabilities. Unfortunately, interaction between the residual limb and the prosthetic socket causes elevated internal strains and stresses in the muscle and fat tissues in the residual limb, which may lead to deep tissue injury (DTI) and other complications. Presently, there is paucity of information on the mechanical conditions in the TTA residual limb during load-bearing. Accordingly, our aim was to characterize the mechanical conditions in the muscle flap of the residual limb of a TTA patient after donning the prosthetic socket and during load-bearing. Knowledge of internal mechanical conditions in the muscle flap can be used to identify the risk for DTI and improve the fitting of the prosthesis. We used a patient-specific modelling approach which involved an MRI scan, interface pressure measurements between the residual limb and the socket of the prosthesis and three-dimensional non-linear large-deformation finite-element (FE) modelling to quantify internal soft tissue strains and stresses in a female TTA patient during static load-bearing. Movement of the truncated tibia and fibula during load-bearing was measured by means of MRI and used as displacement boundary conditions for the FE model. Subsequently, we calculated the internal strains, strain energy density (SED) and stresses in the muscle flap under the truncated bones. Internal strains under the tibia peaked at 85%, 129% and 106% for compression, tension and shear strains, respectively. Internal strains under the fibula peaked at substantially lower values, that is, 19%, 22% and 19% for compression, tension and shear strains, respectively. Strain energy density peaked at the tibial end (104kJ/m(3)). The von Mises stresses peaked at 215kPa around the distal end of the tibia. Stresses under the fibula were at least one order of magnitude lower than the stresses under the tibia. We surmise that our present patient-specific modelling method is an important tool in understanding the etiology of DTI in the residual limbs of TTA patients.

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Year:  2008        PMID: 18495134     DOI: 10.1016/j.jbiomech.2008.03.035

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  14 in total

Review 1.  Current progress in patient-specific modeling.

Authors:  Maxwell Lewis Neal; Roy Kerckhoffs
Journal:  Brief Bioinform       Date:  2009-12-02       Impact factor: 11.622

2.  Automated subject-specific, hexahedral mesh generation via image registration.

Authors:  Songbai Ji; James C Ford; Richard M Greenwald; Jonathan G Beckwith; Keith D Paulsen; Laura A Flashman; Thomas W McAllister
Journal:  Finite Elem Anal Des       Date:  2011-10-01       Impact factor: 2.972

3.  A Framework for Measuring the Time-Varying Shape and Full-Field Deformation of Residual Limbs Using 3-D Digital Image Correlation.

Authors:  Dana Solav; Kevin M Moerman; Aaron M Jaeger; Hugh M Herr
Journal:  IEEE Trans Biomed Eng       Date:  2019-01-24       Impact factor: 4.538

4.  A finite element model to assess transtibial prosthetic sockets with elastomeric liners.

Authors:  John C Cagle; Per G Reinhall; Kate J Allyn; Jake McLean; Paul Hinrichs; Brian J Hafner; Joan E Sanders
Journal:  Med Biol Eng Comput       Date:  2017-12-13       Impact factor: 2.602

5.  Developing a control framework for self-adjusting prosthetic sockets incorporating tissue injury risk estimation and generalized predictive control.

Authors:  F M Mbithi; A J Chipperfield; J W Steer; A S Dickinson
Journal:  Biomed Eng Lett       Date:  2021-12-02

Review 6.  Technologies to monitor the health of loaded skin tissues.

Authors:  Dan L Bader; Peter R Worsley
Journal:  Biomed Eng Online       Date:  2018-04-12       Impact factor: 2.819

Review 7.  Review of the socket design and interface pressure measurement for transtibial prosthesis.

Authors:  Gh Pirouzi; N A Abu Osman; A Eshraghi; S Ali; H Gholizadeh; W A B Wan Abas
Journal:  ScientificWorldJournal       Date:  2014-08-13

8.  Development of an air pneumatic suspension system for transtibial prostheses.

Authors:  Gholamhossein Pirouzi; Noor Azuan Abu Osman; Azim Ataollahi Oshkour; Sadeeq Ali; Hossein Gholizadeh; Wan A B Wan Abas
Journal:  Sensors (Basel)       Date:  2014-09-09       Impact factor: 3.576

9.  An Efficient Modelling-Simulation-Analysis Workflow to Investigate Stump-Socket Interaction Using Patient-Specific, Three-Dimensional, Continuum-Mechanical, Finite Element Residual Limb Models.

Authors:  Ellankavi Ramasamy; Okan Avci; Beate Dorow; Sook-Yee Chong; Leonardo Gizzi; Günter Steidle; Fritz Schick; Oliver Röhrle
Journal:  Front Bioeng Biotechnol       Date:  2018-09-19

10.  3D-printable zwitterionic nano-composite hydrogel system for biomedical applications.

Authors:  Nathalie Sällström; Andrew Capel; Mark P Lewis; Daniel S Engstrøm; Simon Martin
Journal:  J Tissue Eng       Date:  2020-10-29       Impact factor: 7.813

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