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假肢接受腔内膝下残肢应力的计算分析与临床测量比较。

Comparison of computational analysis with clinical measurement of stresses on below-knee residual limb in a prosthetic socket.

作者信息

Zhang M, Roberts C

机构信息

Jockey Club Rehabilitation Engineering Centre, The Hong Kong Polytechnic University, Kowloon, Hong Kong, People's Republic of China.

出版信息

Med Eng Phys. 2000 Nov;22(9):607-12. doi: 10.1016/s1350-4533(00)00079-5.

Abstract

Interface pressures and shear stresses between a below-knee residual limb and prosthetic socket predicted using finite element analyses were compared with experimental measurements. A three-dimensional nonlinear finite element model, based on actual residual geometry and incorporating PTB socket rectification and interfacial friction/slip conditions, was developed to predict the stress distribution. A system for measuring pressures and bi-axial shear stresses was used to measure the stresses in the PTB socket of a trans-tibial amputee. The FE-predicted results indicated that the peak pressure of 226 kPa occurred at the patellar tendon area and the peak shear stress of 50 kPa at the anterolateral tibia area. Quantitatively, FE-predicted pressures were 11%, on average, lower than those measured by triaxial transducers placed at all the measurement sites. Because friction/slip conditions between the residual limb and socket liner were taken into consideration by using interface elements in the FE model, the directions and magnitudes of shear stresses match well between the FE prediction and clinical measurements. The results suggest that the nonlinear mechanical properties of soft tissues and dynamic effects during gait should be addressed in future work.

摘要

使用有限元分析预测的膝下残肢与假肢接受腔之间的界面压力和剪应力,与实验测量值进行了比较。基于实际残肢几何形状并纳入髌韧带承重(PTB)接受腔矫正及界面摩擦/滑动条件,开发了一个三维非线性有限元模型,以预测应力分布。使用一个测量压力和双轴剪应力的系统,来测量一名胫骨截肢者PTB接受腔中的应力。有限元预测结果表明,226 kPa的峰值压力出现在髌腱区域,50 kPa的峰值剪应力出现在胫骨前外侧区域。定量而言,有限元预测的压力平均比放置在所有测量部位的三轴传感器所测量的压力低11%。由于在有限元模型中使用界面单元考虑了残肢与接受腔衬里之间的摩擦/滑动条件,有限元预测与临床测量之间剪应力的方向和大小匹配良好。结果表明,未来的工作应考虑软组织的非线性力学特性以及步态期间的动态效应。

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