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Additive manufacturing of polymer melts for implantable medical devices and scaffolds

机译:聚合物熔化的添加剂制造用于植入医疗器械和支架

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摘要

Melt processing is routinely used to fabricate medical polymeric devices/implants for clinical reconstruction and can be incorporated into quality systems procedures for medical device manufacture. As additive manufacturing (AM) becomes increasingly used for biomaterials and biofabrication, the translation of new, customizable, medical devices to the clinic becomes paramount. Melt processing is therefore a distinguishable group within AM that provides an avenue to manufacture scaffolds/implants witha clinical end-point. Three key melt processing AM technologies are highlighted in this review: melt micro-extrusion, selective laser sintering and melt electrospinning writing. The in vivo (including clinical) outcomes of medical devices and scaffolds made with these processes are reviewed. Together, they encompass the melt AM of scaffold architectures with feature sizes and resolutions ranging from 800 nm up to 700 ^m.
机译:熔融加工通常用于制造医用聚合物装置/用于临床重建的植入物,并可纳入医疗器械制造的质量系统程序中。 作为添加剂制造(AM)越来越多地用于生物材料和生物制造,新的,可定制的医疗设备的翻译变为诊所变得至关重要。 因此,熔融加工是在AM内的可区分组,为临床终点制造支架/植入物的途径。 本综述:熔融微挤出,选择性激光烧结和熔体静电纺丝书写中突出了三个关键的熔体处理AM技术。 综述了用这些过程制造的医疗装置和支架的体内(包括临床)结果。 他们一起涵盖了脚手架架构的熔体,具有特征尺寸和分辨率,范围从800 nm高达700 ^ m。

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