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一种用于骨折固定的新型3D打印外固定装置的设计与开发。

Design and Development of a Novel 3-D Printed External Fixation Device for Fracture Stabilization.

作者信息

Skelley Nathan Wm

机构信息

Sanford Health, The University of South Dakota School of Medicine Sioux Falls, 1210 West 18th Street VanDemark Building Suite G01, Sioux Falls, SD, 57104, USA.

出版信息

3D Print Med. 2023 Jun 14;9(1):17. doi: 10.1186/s41205-023-00179-7.

Abstract

BACKGROUND

An external fixator is an orthopaedic device used to stabilize long bone fractures after high energy trauma. These devices are external to the body and fixed to metal pins going into non-injured areas of bone. They serve a mechanical function to maintain length, prevent bending, and resist torque forces about the fracture area. The purpose of this manuscript is to describe a design and prototyping process creating a low-cost entirely 3-D printed external fixator for fracture stabilization of extremity fractures. The secondary objective of this manuscript is to facilitate future advancements, modifications, and innovations in this area of 3-D printing in medicine.

METHODS

This manuscript describes the computer aided design process using desktop fused deposition modeling to create a 3-D printed external fixator system designed for fracture stabilization. The device was created using the orthopaedic goals for fracture stabilization with external fixation. However, special modifications and considerations had to be accounted for given the limitations of desktop fused deposition modeling and 3-D printing with plastic polymers.

RESULTS

The presented device accomplishes the goals of creating a construct that can be attached to 5.0 mm metal pins, allows for modularity in placement orientations, and facilitates adjustable lengths for fracture care. Furthermore, the device provides length stability, prevention of bending, and resists torque forces. The device can be printed on a desktop 3-D printer using standard low-cost polylactic acid filament. The print time is less than two days and can be completed on one print bed platform.

CONCLUSIONS

The presented device is a potential alternative for fracture stabilization. The concept of a desktop 3-D printed external fixator design and method of production allows for numerous diverse applications. This includes assisting areas with remote or limited access to advanced medical care and large-scale natural disasters or global conflicts where large volumes of fractures exceed the local medical supply chain capabilities. The presented device creates a foundation for future devices and innovations in this fracture care space. Further research is needed on mechanical testing and clinical outcomes with this design and initiative in fracture care before clinical application.

摘要

背景

外固定器是一种骨科器械,用于在高能创伤后稳定长骨骨折。这些器械位于身体外部,并固定在插入骨骼非损伤区域的金属针上。它们起到机械作用,以维持长度、防止弯曲并抵抗骨折部位周围的扭力。本文的目的是描述一种设计和原型制作过程,以创建一种低成本的全3D打印外固定器,用于四肢骨折的固定。本文的次要目的是促进医学3D打印领域在这方面的未来进展、改进和创新。

方法

本文描述了使用桌面熔融沉积建模的计算机辅助设计过程,以创建一种用于骨折固定的3D打印外固定器系统。该装置是根据外固定骨折固定的骨科目标创建的。然而,鉴于桌面熔融沉积建模和使用塑料聚合物进行3D打印的局限性,必须进行特殊的修改和考虑。

结果

所展示的装置实现了创建一种可连接到5.0毫米金属针的结构的目标,允许在放置方向上具有模块化,并便于为骨折护理调整长度。此外,该装置提供长度稳定性、防止弯曲并抵抗扭力。该装置可以使用标准低成本聚乳酸长丝在桌面3D打印机上打印。打印时间不到两天,并且可以在一个打印床平台上完成。

结论

所展示的装置是骨折固定的一种潜在替代方案。桌面3D打印外固定器的设计概念和生产方法允许进行多种不同的应用。这包括协助偏远地区或难以获得先进医疗护理的地区,以及在大规模自然灾害或全球冲突中,大量骨折超出当地医疗供应链能力的情况。所展示的装置为该骨折护理领域的未来装置和创新奠定了基础。在临床应用之前,需要对该设计和骨折护理倡议进行进一步的力学测试和临床结果研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ff3/10265812/c1c9c827b7b2/41205_2023_179_Fig1_HTML.jpg

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