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Cranioplasty prosthesis manufacturing based on reverse engineering technology

机译:基于逆向工程技术的颅骨成形假体制造

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Background: Most patients with large focal skull bone loss after craniectomy are referred for cranioplasty. Reverse engineering is a technology which creates a computer-aided design (CAD) model of a real structure. Rapid prototyping is a technology which produces physical objects from virtual CAD models. The aim of this study was to assess the clinical usefulness of these technologies in cranioplasty prosthesis manufacturing. Material/Methods: CT was performed on 19 patients with focal skull bone loss after craniectomy, using a dedicated protocol. A material model of skull deficit was produced using computer numerical control (CNC) milling, and individually pre-operatively adjusted polypropylene-polyester prosthesis was prepared. In a control group of 20 patients a prosthesis was manually adjusted to each patient by a neurosurgeon during surgery, without using CT-based reverse engineering/rapid prototyping. In each case, the prosthesis was implanted into the patient. The mean operating times in both groups were compared.Results: In the group of patients with reverse engineering/rapid prototyping-based cranioplasty, the mean operating time was shorter (120.3 min) compared to that in the control group (136.5 min). The neurosurgeons found the new technology particularly useful in more complicated bone deficits with different curvatures in various planes.Conclusion: Reverse engineering and rapid prototyping may reduce the time needed for cranioplasty neurosurgery and improve the prosthesis fitting. Such technologies may utilize data obtained by commonly used spiral CT scanners. The manufacturing of individually adjusted prostheses should be commonly used in patients planned for cranioplasty with synthetic material.
机译:背景:大多数开颅手术后大面积局灶性颅骨骨丢失的患者被转诊进行颅骨成形术。逆向工程是一种创建真实结构的计算机辅助设计 (CAD) 模型的技术。快速原型制作是一种从虚拟 CAD 模型生成物理对象的技术。本研究的目的是评估这些技术在颅骨成形术假体制造中的临床实用性。材料/方法:使用专用方案对 19 例开颅手术后局灶性颅骨骨质丢失患者进行 CT。采用计算机数控(CNC)铣削法制作颅骨缺损材料模型,并制备术前单独调整的聚丙烯-聚酯假体。在 20 名患者的对照组中,神经外科医生在手术期间为每位患者手动调整假体,而无需使用基于 CT 的逆向工程/快速原型。在每种情况下,假体都被植入患者体内。比较两组的平均手术时间。结果:逆向工程/快速原型开颅手术组患者平均手术时间(120.3分钟)较对照组(136.5分钟)短。神经外科医生发现,这项新技术在更复杂的骨缺损中特别有用,这些骨缺损在各个平面上具有不同的曲率。结论:逆向工程和快速原型制作可以减少颅骨成形术神经外科手术所需的时间,提高假体的贴合度。这种技术可以利用常用的螺旋CT扫描仪获得的数据。单独调整的假体的制造应常用于计划使用合成材料进行颅骨成形术的患者。

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