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Fast Soft Tissue Deformation and Stump-Socket Interaction Toward a Computer-Aided Design System for Lower Limb Prostheses

机译:快速软组织变形和树桩插座相互作用对低肢假散的计算机辅助设计系统

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摘要

Prosthetic technology is rapidly advancing but there's a catch. Regardless the technology or the material used, a minimum cost is still high. One of the problems relates to the fact that the conventional socket fabrication process is still used. This method is based on subjective estimations of the involved specialists and feedbacks of the patients. This process consumes remarkable amount of time, manpower and materials. Research works are needed to design new efficient and low-cost alternative techniques for the socket design. This technique should definitely be based on CAD-CAM methods. Therefore, the first step toward this objective is to establish an accurate numeric model for evaluating and optimizing the design process. In this present work, we developed a new approach to simulate the stump soft tissue deformation and stump-socket interaction using Mass-Spring System (MSS) approach and a point-to-surface contact formulation.A novel Mass-Spring System with corrective spring (MSS-CS) model was developed and evaluated. A node-to-surface contact formulation was also integrated and evaluated. The MSS-CS model and contact formulation were evaluated with primitive geometrical object and a stump-socket model. Moreover, a finite element model of the stump-socket interaction was also developed using Abaqus to evaluate the proposed approach.Obtained results show that the proposed contact formulation has a very good precision level and the contact pressures on the interface between the elastic and rigid bodies are very close to the analytical solutions. The comparison with Abaqus showed a qualitative concordance for the contact pressure. However, quantitative deviation remains high [25-50]% at the peak contact pressure due to different contact formulations. In particular, our MSS-CS approach is more efficient than Abaqus simulation in term of computational time and cost.A novel approach was proposed to model soft tissue deformation and stump-socket interaction in an efficient and accurate manner. As perspectives, this present approach for a real-time simulation of the stump-socket interaction could be used in a real-time CAD-CAM platform to provide a cost-effective socket manufacturing process. (C) 2020 AGBM. Published by Elsevier Masson SAS. All rights reserved.
机译:假肢技术正在迅速推进,但有一个捕获。无论使用的技术还是使用的材料,最低成本仍然很高。其中一个问题涉及仍然使用传统的插口制造过程的事实。该方法基于所涉及的专家的主观估计和患者的反馈。该过程消耗了非凡的时间,人力和材料。需要研究工程来为插座设计设计新的高效和低成本替代技术。该技术肯定应基于CAD-CAM方法。因此,朝向该目标的第一步是建立一个准确的数字模型,用于评估和优化设计过程。在本工作中,我们开发了一种新的方法来模拟使用质量弹簧系统(MSS)方法的树桩软组织变形和树桩插座相互作用,以及一种具有矫正弹簧的新型大量弹簧系统(MSS-CS)模型开发和评估。还集成和评估了节点到表面接触配方。用原始几何物体和Stump-套接字模型评估MSS-CS模型和接触配方。此外,还使用ABAQUS开发了Sump-套接字相互作用的有限元模型,以评估所提出的方法。表明结果表明,所提出的接触配方具有非常好的精度水平和弹性和刚体之间的界面上的接触压力非常好非常接近分析解决方案。与ABAQU的比较显示了接触压力的定性一致。然而,由于不同的接触制剂,定量偏差在峰值接触压力下保持高[25-50]%。特别是,我们的MSS-CS方法比计算时间的术语与ABAQUS模拟更有效,并且提出了一种新的方法以高效且准确的方式模拟软组织变形和树桩间相互作用。作为透视图,该目前的用于实时模拟树桩套接字交互的方法可用于实时CAD-CAM平台,以提供经济高效的插座制造过程。 (c)2020年AGBM。由Elsevier Masson SA出版。版权所有。

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