DocumentCode
2089538
Title
Biomechanical Research of the Endoskeletal Trans-tibial Monolimb
Author
Liu, Zhan ; Fan, Yubo ; Qian, Yingli ; Zhang, Ming
Author_Institution
Sichuan Univ., Chengdu
fYear
2007
fDate
23-27 May 2007
Firstpage
1267
Lastpage
1271
Abstract
Monolimb, a new type of lower-limb prostheses with the socket and the shank integrated from a piece of thermoplastic material, is an alternative to conventional prosthesis for lower cost and weight. However, the design criterion of monolimbs is still absent. In this study, a three-dimensional finite element model was constructed according to an endoskeletal trans-tibial monolimb. Based on this model, the effects of wall thickness, material properties and loading conditions on the stress distributions in the monolimbs and the stumps were analyzed. The results indicated that the introduction of increased thickness of shank was proven to be useful for the design of monolimb. Further studies could promote the suitable choice of the wall thickness of monolimb for amputees. The stresses in the monolimb and the stump were hardly sensitive to the material properties of monolimb, so polypropylene homopolymer with low cost, easy fabrication and high yield stress was optimal for the material of monolimb. Because the peak stresses in the monolimb and the stump at Heel Off were higher than the other stance phases, the load conditions of Hell Off should be chiefly considered into the design of monolimb. The information could provide a reference for the design and optimization of monolimbs.
Keywords
artificial limbs; biomedical materials; finite element analysis; polymers; 3D finite element model; biomechanics; design criterion; endoskeletal trans-tibial monolimb; lower-limb prosthesis; polypropylene homopolymer; thermoplastics; Biological materials; Costs; Design optimization; Fabrication; Finite element methods; Laboratories; Material properties; Prosthetics; Sockets; Stress; Conventional prosthesis; Finite element analysis; Monolimb; Stance phase; Wall thickness;
fLanguage
English
Publisher
ieee
Conference_Titel
Complex Medical Engineering, 2007. CME 2007. IEEE/ICME International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-1077-4
Electronic_ISBN
978-1-4244-1078-1
Type
conf
DOI
10.1109/ICCME.2007.4381947
Filename
4381947
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