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Design of 3D Additively Manufactured Hybrid Structures for Cranioplasty

机译:颅骨成形术的3D含量杂交结构的设计

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摘要

A wide range of materials has been considered to repair cranial defects. In the field of cranioplasty, poly(methyl methacrylate) (PMMA)-based bone cements and modifications through the inclusion of copper doped tricalcium phosphate (Cu-TCP) particles have been already investigated. On the other hand, aliphatic polyesters such as poly(ε-caprolactone) (PCL) and polylactic acid (PLA) have been frequently investigated to make scaffolds for cranial bone regeneration. Accordingly, the aim of the current research was to design and fabricate customized hybrid devices for the repair of large cranial defects integrating the reverse engineering approach with additive manufacturing, The hybrid device consisted of a 3D additive manufactured polyester porous structures infiltrated with PMMA/Cu-TCP (97.5/2.5 w/w) bone cement. Temperature profiles were first evaluated for 3D hybrid devices (PCL/PMMA, PLA/PMMA, PCL/PMMA/Cu-TCP and PLA/PMMA/Cu-TCP). Peak temperatures recorded for hybrid PCL/PMMA and PCL/PMMA/Cu-TCP were significantly lower than those found for the PLA-based ones. Virtual and physical models of customized devices for large cranial defect were developed to assess the feasibility of the proposed technical solutions. A theoretical analysis was preliminarily performed on the entire head model trying to simulate severe impact conditions for people with the customized hybrid device (PCL/PMMA/Cu-TCP) (i.e., a rigid sphere impacting the implant region of the head). Results from finite element analysis (FEA) provided information on the different components of the model.
机译:已经考虑了各种各样的材料来修复颅缺陷。在颅骨成形术领域,已经研究过骨水泥和通过包含铜掺杂的磷酸钙(Cu-TCP)颗粒的骨水泥和改性。另一方面,已经经常研究了脂族聚酯,例如聚(ε-己内酯)(PCL)和聚乳酸(PLA)以使支架用于颅骨再生。因此,目前研究的目的是设计和制造定制的混合装置,用于修复与添加剂制造的逆向工程方法相结合的大型颅缺损,混合装置由3D添加剂制造的聚酯多孔结构组成,用PMMA / Cu-渗透TCP(97.5 / 2.5 w / w)骨水泥。首先对3D混合装置(PCL / PMMA,PLA / PMMA,PCL / PMMA / CU-TCP和PLA / PMMA / CU-TCP评估温度曲线。为杂种PCL / PMMA和PCL / PMMA / Cu-TCP记录的峰值温度明显低于基于PLA的PCL / PMMA / Cu-TCP。开发了用于大型颅缺陷的定制设备的虚拟和物理模型,以评估所提出的技术解决方案的可行性。在整个头部模型上预先进行理论分析,试图为使用定制的混合装置(PCL / PMMA / CU-TCP)的人们模拟严重的冲击条件(即,影响头部植入区域的刚性球)。有限元分析(FEA)的结果提供了关于模型的不同组件的信息。

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