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Selective laser sintered mould for orbital cavity reconstruction

机译:用于轨道腔重建的选择性激光烧结模具

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Purpose Orbital fractures are the most commonly encountered midfacial fractures, and usually, the fracture involves the floor and/or the medial wall of the orbit. This paper aims to present an innovative approach for primary and secondary reconstructions of fractured orbital walls through the use of computer-assisted techniques and additive manufacturing. Design/methodology/approach First, through the 3D anatomical modelling, the geometry of the implant is shaped to fill the orbital defect and recover the facial symmetry. Subsequently, starting from the modelled implant, a customised mould is designed taking into account medical and technological requirements. Findings The selective laser sintered mould is able to model and form several kind of prosthetic materials (e.g. titanium meshes and demineralised bone tissue), resulting in customised implants and allowing accurate orbital cavity reconstructions. The case study proved that this procedure, at the same time, reduces the morbidity on the patients, the duration of surgery and the related costs. Originality/value This innovative approach has great potential, as it is an easy and in-office procedure, and it offers several advantages over other existing methods.
机译:目的轨道骨折是最常见的中敷骨折,通常,骨折涉及轨道的地板和/或内侧壁。本文旨在通过使用计算机辅助技术和添加剂制造来提出骨折轨道壁的初级和二次重建的创新方法。设计/方法/方法首先,通过3D解剖模型,植入物的几何形状成形为填充轨道缺陷并回收面部对称性。随后,从模型植入物开始,设计了一种定制的模具,考虑到医疗和技术要求。结果选择性激光烧结模具能够模拟并形成几种假肢材料(例如钛网和脱矿质骨组织),导致定制植入物并允许精确的轨道腔重建。案例研究证明,该程序同时降低了患者的发病率,手术的持续时间和相关成本。原创性/价值这种创新方法具有很大的潜力,因为它是一种简单和办公手术,它提供了其他现有方法的几个优势。

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