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ANALYSIS OF FINGER PIP IMPLANTS

机译:手指皮管植入物分析

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摘要

Total joint arthroplasty (TJA) is implemented primarily for the relief of pain, and secondarily for achieving better function by increasing the joint's strength and motion, In order to keep health costs low, it is desirable that the TJA achieves and maintains a long-term and secure fixation of the implanted components. Unfortunately, clinical follow-up shows that the prosthetic finger implant components have long-term complications including bone resorption, wear, loosening, and failure of the implant components. Although the mechanism of complications is not fully understood, it is well known that the wear and failure of prostheses are highly related to the mechanical forces or stresses of implant components. It is therefore desirable that reliable 3-D computational finite element analysis (FEA) models can be developed and used for the stress analysis of implants. In this study, the finger proximal interphalangeal (PIP) prosthetic components were analyzed using a nonlinear finite element method. Implant components under different joint flexion angles as well as different forces were studied. The stress distribution on the contact surface of the implant component was obtained. The developed FEA models can be used to examine the contact situations (contact stress, contact region, and stress distribution), which are critical to the wear and potential failure of the implant components. Based on FEA results, the design of the current finger PIP implants can be improved for optimum performance and a long-term fixation.
机译:总关节关节术(TJA)主要用于缓解疼痛,二次用于通过提高关节的力量和运动来实现更好的功能,以便保持健康成本低,因此TJA可实现并保持长期并固定植入组件的固定。遗憾的是,临床随访表明,假肢植入部件具有长期并发症,包括骨吸收,磨损,松动和植入部件的失效。虽然并发症的机制尚不完全明白,但众所周知,假体的磨损和失效与植入部件的机械力或应力高度相关。因此,希望可靠的3-D计算有限元分析(FEA)模型可开发并用于植入物的应力分析。在该研究中,使用非线性有限元法分析手指近端间骨膜(PIP)假体组分。研究了不同的关节屈曲角度的植入部件以及不同的力。获得植入部件的接触表面上的应力分布。开发的FEA模型可用于检查接触情况(接触应力,接触区域和应力分布),这对植入部件的磨损和潜在故障至关重要。基于FEA结果,可以提高目前的手指PIP植入物的设计以获得最佳性能和长期固定。

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