Global trends in the development of complex, personalized, biomedical, surgical implant devices using 3D printing/additive manufacturing: A review

Lawrence E. Murr
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引用次数: 4

Abstract

With the advent and proliferation of commercial 3D printing/additive manufacturing systems for laser and electron beam powder bed fusion fabrication of complex, open-cellular metal and alloy biomedical implant devices over the past decade, custom manufacture of personalized and patient-specific devices has become popularized. In-hospital, point-of-care surgical service centres have been established around the world, which include surgical modelling and planning, and surgical model fabrication, as well as the production of complex, open-cellular, patient-specific implants; especially of Ti-6Al-4 V alloy. The selective production of open-cellular, porous mesh and foam biomedical devices provides for optimal biomechanical compatibility with bone as well as bone cell ingrowth, which assures implant fixation and the reduction of revision surgeries. This review discusses these issues in the context of globalization of custom implant device fabrication.

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使用3D打印/增材制造的复杂、个性化、生物医学、外科植入设备的全球发展趋势:综述
在过去的十年中,随着用于激光和电子束粉末床融合制造复杂的开放式金属和合金生物医学植入装置的商用3D打印/增材制造系统的出现和扩散,个性化和患者特定设备的定制制造已经普及。在世界各地建立了医院内、护理点外科服务中心,包括外科模型和规划、外科模型制作以及生产复杂的、开放细胞的、针对患者的植入物;特别是ti - 6al - 4v合金。选择性生产的开放细胞,多孔网和泡沫生物医学设备提供了最佳的生物力学相容性与骨以及骨细胞向内生长,这保证了种植体固定和减少翻修手术。这篇综述讨论了这些问题在全球化的背景下定制植入装置制造。
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