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Fabrication and selection of surrogate knee implant bearings for experimental evaluation of embedded in-vivo sensors

机译:替代膝关节植入轴承的制造与选择嵌入式体内传感器的实验评估

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摘要

Total Knee Replacement (TKR) is a common procedure that is gaining importance with the aging American population. Although TKR is common, about 20% of patients report being unhappy with their results. Previous research has pointed to misalignment and loosening as contributing factors to negative outcomes. What is lacking in the field of TKR is a sensory system that can determine the internal loads of the knee in a direct manner. Implant bearings embedded with piezoelectric transducers have already shown promise in providing accurate sensing data. To perform further experimentation, prototype implant bearings that can be accurately and efficiently produced are needed. This work investigates various fabrication processes and possible materials to provide a foundation for developing surrogate biomechanical implants, especially those with integrated smart sensors. In this study, an original knee bearing is scanned and the resulting geometries used to generate prototypes. The prototypes are fabricated using a variety of methods including CNC machining and additive manufacturing. The prototypes are then tested to determine load distribution, active sensor performance, as well as kinematic performance under loading. The results of this study show that FDM printing provides quick and affordable results but is not ideal for rigorous experimentation. SLA printed prototypes are improved in final quality with an increase in fabrication time. Lastly, CNC machined processes are more labor intensive but can provide the best material characteristics. The findings from this study aim to have an impact not only on researchers studying biomedical sensing, but on the field of biomechanical implants.
机译:全膝关节替换(TKR)是一种常见的程序,即与老龄化的美国人口达成重视。虽然TKR是常见的,但大约20%的患者报告对他们的结果不满意。以前的研究指出了未对准和松动,因为为负面结果的贡献因素有所贡献。 TKR领域缺乏的是一种感官系统,可以直接地确定膝盖的内部负载。嵌入压电换能器的植入物轴承已经在提供准确的感测数据方面已经示出了承诺。为了执行进一步的实验,需要准确和有效地生产的原型植入物轴承。该工作调查了各种制造工艺和可能的材料,以提供用于开发替代生物力学植入物的基础,特别是具有集成智能传感器的基础。在这项研究中,扫描了原始的膝关节轴承,并且用于产生原型的所得几何形状。使用包括CNC加工和添加剂制造的各种方法制造原型。然后测试原型以确定负载分布,主动传感器性能以及负载下的运动性能。本研究的结果表明,FDM印刷提供了快速且价格合理的结果,但不适合严格的实验。 SLA印刷原型在最终质量上得到改善,并随着制造时间的增加而得到改善。最后,CNC加工过程更加劳动,但可以提供最佳的材料特性。本研究的调查结果旨在影响研究生物医学传感的研究人员,而是对生物力学植入物的领域。

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