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The use of rapid prototyping in the design of a customised ankle brace structure for ACL injury risk reduction

机译:快速原型在定制踝关节支撑结构设计中用于减少ACL损伤风险

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摘要

Rapid prototyping, or additive manufacturing, is becoming more useful in creating functional prototypes, especially when customisation is required. This paper explores the use of three-dimensional (3D) printing in designing a customised ankle brace structure for anterior cruciate ligament (ACL) injury risk reduction. A new process is proposed to obtain ankle flexion angles and the corresponding foot surface strain associated with high ACL injury risks through motion analysis. This data is used in the design of the customised ankle brace structure and printed using rapid prototyping. One customised ankle brace structure was printed and tested to demonstrate this proposed framework. The ankle flexion range of motion (ROM) was significantly reduced in the high-risk ankle positions with the ankle brace structure. Rapid prototyping could thus be used to design customised ankle brace structures and this is useful in reducing fabrication time and complexity of customisation.
机译:快速原型制作或增材制造在创建功能原型时变得越来越有用,尤其是在需要定制时。本文探讨了三维(3D)打印在设计定制的踝支撑结构中的用途,以降低前交叉韧带(ACL)的受伤风险。提出了一种通过运动分析获得与高ACL损伤风险相关的踝关节屈曲角度和相应的足部表面应变的新方法。此数据用于定制的脚踝支撑结构的设计中,并使用快速原型进行打印。一种定制的脚踝支撑结构被印刷和测试以证明该建议框架。在高风险的脚踝位置,采用脚踝支撑结构,可显着减小脚踝屈伸运动范围(ROM)。因此,快速原型可用于设计定制的脚踝支撑结构,这对于减少制造时间和定制复杂性很有用。

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