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首页> 外文期刊>Annals of the Academy of Medicine, Singapore >Engineering a trans-tibial prosthetic socket for the lower limb amputee.
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Engineering a trans-tibial prosthetic socket for the lower limb amputee.

机译:为下肢截肢者设计一个胫骨假体插座。

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Introduction: This review addresses the different prosthetic socket designs for trans-tibial amputees, the biomechanics behind the designs and the current state of the fi eld. Of particular focus is the classic patella-tendon bearing (PTB) socket and the more recent sockets manufactured using pressure casting techniques and the theory, biomechanics and clinical implications of the two designs. Methods to examine and compare these designs are also addressed. Materials and Methods: Journal papers by various investigators which have clinical signifi cance/impact on the fi eld of trans-tibial socket design were chosen for this review. Articles were chosen over a period of over 50 years to demonstrate the evolution of knowledge. Results: The engineering of the trans-tibial socket has been largely subjected to empirical derivations and biomechanical theory that remains, for the most part, unproven. The fundamental principles of the PTB socket have been widely refuted. Hydrostatic theory based on pressure casting techniques, on the other hand, provides an optimal scenario to produce a more uniform stump/socket interface pressure. Conclusion: Preliminary studies indicate the pressure casting technique has the potential to produce comfortable sockets, providing an alternative to the PTB design. Various studies have been attempted to quantitatively compare the 2 types of socket designs. However, further quantitative biomechanical studies are needed to explain the fundamental theory surrounding the pressure cast technique. Methods that could help further understand the pressure cast concept include amputee gait analysis, stump/socket interface pressure measurements, computer aided socket design and fi nite element modelling techniques.
机译:简介:这篇综述探讨了针对胫骨截肢者的假体插座设计,设计背后的生物力学以及该领域的现状。特别要注意的是经典的骨-肌腱轴承(PTB)插座,以及最近使用压力铸造技术制造的插座,以及这两种设计的理论,生物力学和临床意义。还讨论了检查和比较这些设计的方法。材料和方法:本研究选择了对跨胫骨窝设计领域具有临床意义/影响力的各种研究者的期刊论文。我们选择了超过50年的文章来证明知识的发展。结果:经胫骨窝的工程在很大程度上受到经验推导和生物力学理论的影响,但在很大程度上尚未得到证实。 PTB插座的基本原理已被广泛反驳。另一方面,基于压力铸造技术的静液压理论为产生更均匀的树桩/管套界面压力提供了最佳方案。结论:初步研究表明,压力铸造技术具有生产舒适插座的潜力,为PTB设计提供了替代方案。已经尝试了各种研究来定量比较两种插座设计。然而,需要进一步的定量生物力学研究来解释围绕压力铸造技术的基本理论。可以帮助进一步理解压力铸造概念的方法包括截肢者步态分析,树桩/插座界面压力测量,计算机辅助插座设计和有限元建模技术。

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