Knowledge-based system for guided modeling of sockets for lower limb prostheses

被引:3
作者
Facoetti G. [1 ]
Gabbiadini S. [1 ]
Colombo G. [2 ]
Rizzi C. [1 ]
机构
[1] University of Bergamo
[2] Polytechnic of Milan
关键词
3d socket modelling; Artificial prosthesis design; Knowledge-based system;
D O I
10.3722/cadaps.2010.723-737
中图分类号
学科分类号
摘要
This paper presents a 3D CAD system to design sockets of lower limb prostheses, both transfemoral and transtibial. The proposed system, named Virtual Socket Laboratory, can be seen as a virtual laboratory where the user has at her/his disposal virtual tools that permit to emulate the procedures applied by orthopaedic technicians during the traditional socket manufacturing. The module is centred on the digital model of the patient and is based on the specific domain knowledge to guide the user during socket modelling suggesting the most appropriate design rules and procedures. First, main steps of the new design-modelling process and system functionalities are presented. Then, for each step, procedures carried during the traditional process, how they are executed with the new module and tools specifically developed are described. © 2010 CAD Solutions, LLC.
引用
收藏
页码:723 / 737
页数:14
相关论文
共 14 条
[1]  
Atlas of Limb Prosthetics, Surgical, Prosthetic, and Rehabilitation Principles, (1992)
[2]  
Buzan T., How to Mind Map, (2002)
[3]  
Cuccurullo S.J., Physical Medicine and Rehabilitation Board Review, (2004)
[4]  
Cugini U., Bertetti P., Bonacini D., Colombo G., Corradini C., Magrassi G., Innovative implementation in socket design: Digital models to customize the product1, Proceedings of Art Abilitation, 1, pp. 54-61, (2006)
[5]  
Faustini M.C., Neptune R.R., Crawford R.H., The quasi-static response of compliant prosthetic sockets for transtibial amputees using finite elements methods, Medical Engineering & Physics, 28, pp. 114-121, (2006)
[6]  
Frillici F.S., Rissone P., Rizzi C., Rotini F., The role of simulation tools to innovate the prosthesis socket design process, Intelligent Production Machines and Systems, pp. 612-619, (2008)
[7]  
Marks L.J., Michael J.W., Artificial limbs, BMJ, 323, pp. 732-735, (2001)
[8]  
Lee W.C.C., Zhang M., Jia X., Load transfer mechanics between trans-tibial prosthetic socket and residual limb dynamic effects, Journal of Biomechanics, 37, pp. 1371-1377, (2004)
[9]  
Lee W.C.C., Zhang M., Jia X., Cheung J.T.M., Finite element modelling of the contact interface between transtibial residual limb and prosthetic socket, Medical Engineering & Physics, 26, pp. 655-662, (2004)
[10]  
Seymour R., Prosthetics and Orthotics Lower Limb and Spinal, (2002)