首页> 外文期刊>Australasian Medical Journal >Additively manufactured custom load-bearing implantable devices
【24h】

Additively manufactured custom load-bearing implantable devices

机译:增材制造的定制承重植入式设备

获取原文
       

摘要

Background Additive manufacturing technologies are being enthusiastically adopted by the orthopaedic community since they are providing new perspectives and new possibilities. First applications were finalised for educational purposes, pre-operative planning, and design of surgical guides; recent applications also encompass the production of implantable devices where 3D printing can bring substantial benefits such as customization, optimization, and manufacturing of very complex geometries. The conceptual smoothness of the whole process may lead to the idea that any medical practitioner can use a 3D printer and her/his imagination to design and produce novel products for personal or commercial use. Aims Outlining how the whole process presents more than one critical aspects, still demanding further research in order to allow a safe application of this technology for fully-custom design, in particular confining attention to orthopaedic/orthodontic prostheses defined as components responding mainly to a structural function. Methods Current knowledge of mechanical properties of additively manufactured components has been examined along with reasons why the behaviour of these components might differ from traditionally manufactured components. The structural information still missing for mechanical design is outlined. Results Mechanical properties of additively manufactured components are not completely known, and especially fatigue limit needs to be examined further. Conclusion At the present stage, with reference to load-bearing implants subjected to many loading cycles, the indication of custom-made additively manufactured medical devices should be restricted to the cases with no viable alternative.
机译:背景技术增材制造技术正被骨科学界广泛采用,因为它们提供了新的视角和新的可能性。出于教育目的,术前计划和外科手术指南的设计,最终完成了首次申请;最近的应用还包括可植入设备的生产,其中3D打印可以带来很多好处,例如定制,优化和制造非常复杂的几何形状。整个过程在概念上的流畅性可能导致一个想法,即任何医生都可以使用3D打印机及其想象力来设计和生产用于个人或商业用途的新颖产品。目的概述整个过程如何呈现多个关键方面,但仍需要进一步研究,以便将该技术安全地应用于完全定制的设计,特别是将注意力集中在正畸/正畸假体上,该假体被定义为主要对结构作出反应的组件功能。方法研究了目前对增材制造部件的机械性能的了解,以及这些部件的行为可能与传统制造部件不同的原因。概述了机械设计中仍然缺少的结构信息。结果增材制造组件的机械性能尚不完全清楚,尤其是疲劳极限还需要进一步检查。结论在现阶段,对于承受多次负荷循环的承重植入物,应将定制增材制造的医疗器械的适应症限制在没有其他选择的情况下。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号