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Using computational simulation to aid in the prediction of socket fit: a preliminary study.

机译:使用计算仿真来辅助预测窝配合:初步研究。

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This study illustrates the use of computational analysis to predict prosthetic socket fit. A simple indentation test is performed by applying force to the residual limb of a trans-tibial amputee through an indenter until the subject perceives the onset of pain. Computational finite element (FE) analysis is then applied to evaluate the magnitude of pressure underlying the indenter that initiates pain (pain threshold pressure), and the pressure at the prosthetic socket-residual limb interface. The assessment of socket fit is examined by studying whether or not the socket-limb interface pressure exceeds the pain threshold pressure of the limb. Based on the computer-aided assessment, a new prosthetic socket is then fabricated and fitted to the amputee subject. Successful socket fit is achieved at the end of this process. The approach of using computational analysis to aid in assessing socket fit allows a more efficient evaluation and re-design of the socket even before the actual fabrication and fitting ofthe prosthetic socket. However, more thorough investigations are required before this approach can be widely used. A subsequent part of this paper discusses the limitations and suggests future research directions in this area.
机译:这项研究说明了使用计算分析来预测假牙窝的配合。通过通过压头向经胫骨截肢者的残肢施加力,直到受试者感觉到疼痛发作,来执行简单的压痕测试。然后应用计算有限元(FE)分析来评估引发疼痛的压头下方的压力大小(疼痛阈值压力),以及假牙窝-残肢界面的压力。通过研究承窝-肢体界面压力是否超过肢体的疼痛阈值压力来评估承窝配合的评估。在计算机辅助评估的基础上,然后制造了一个新的假肢插座,并将其安装到截肢者身上。在此过程结束时,插座安装成功。使用计算分析来帮助评估承窝配合的方法甚至可以在假体承窝的实际制造和安装之前对承窝进行更有效的评估和重新设计。但是,在广泛使用此方法之前,需要进行更彻底的研究。本文的后续部分讨论了局限性,并提出了该领域的未来研究方向。

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