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A novel method for designing and fabricating custom-made artificial bones.

机译:一种设计和制造定制人造骨头的新颖方法。

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摘要

Artificial bones are useful for tissue augmentation in patients with facial deformities or defects. Custom-made artificial bones, produced by mirroring the bone structure on the healthy side using computer-aided design, have been used. This method is simple, but has limited ability to recreate detailed structures. The authors have invented a new method for designing artificial bones, better customized for the needs of individual patients. Based on CT data, three-dimensional (3D) simulation models were prepared using an inkjet printer using plaster. The operators applied a special radiopaque paraffin wax to the models to create target structures. The wax contained a contrast medium to render it radiopaque. The concentration was adjusted to achieve easy manipulation and consistently good-quality images. After the radiopaque wax was applied, the 3D simulation models were reexamined by CT, and data on the target structures were obtained. Artificial bones were fabricated by the inkjet printer based on these data. Although this new technique for designing artificial bones is slightly more complex than the conventional methods, and the status of soft tissue should also be considered for an optimal aesthetic outcome, the results suggest that this method better meets the requirements of individual patients.
机译:人造骨可用于面部畸形或缺陷的患者的组织增强。已使用通过使用计算机辅助设计在健康侧镜像骨骼结构而生产的定制人造骨骼。此方法很简单,但是重建详细结构的能力有限。作者已经发明了一种设计人造骨骼的新方法,该方法可以更好地针对个别患者的需求进行定制。基于CT数据,使用使用灰泥的喷墨打印机准备了三维(3D)仿真模型。操作人员在模型上应用了不透射线的特殊石蜡,以创建目标结构。蜡中含有一种造影剂,使其不透射线。调整浓度以实现简单的操作和始终如一的高质量图像。施加不透射线的蜡后,通过CT重新检查3D模拟模型,并获得目标结构的数据。喷墨打印机根据这些数据制作出人造骨骼。尽管这种用于设计人造骨头的新技术比传统方法要稍微复杂一些,并且还应考虑软组织的状态以达到最佳美学效果,但结果表明该方法更好地满足了各个患者的要求。

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