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Pre-operative patient-specific alloplastic implant design and manufacturing: cranioplasty application

机译:术前针对患者的同种异体植入物的设计和制造:颅骨成形术的应用

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Cranial defects are often result of decompressive craniotomies performed after brain injuries, tumor extraction and trauma, leaving patients with severe functional and aesthetic problems. The partially or total reconstruction (cranioplasty) is expensive, especially for low-income patients. The standard protocol is to use the pre-fabricated implants made of titanium or Peek using complex CNC machines. In this work we present a method for design and build a low cost alloplastic implants using the commercial bone cement based on Polymethyl-Methacrylate (PMMA), free software and rapid prototyping. The design process starts with data image acquisition from high resolution CT scans of a patient defect, the image is segmented carefully using 3DSlicer and then exported as a cloud point format. Subsequently, the reconstruction of the defect the design of the implant was carried out using the software Blender. To avoid interference with the surrounding tissue of the skull, it is necessary to create an internal offset between the implant and cranial bony contour, ranging from 0.8 to 1 mm. The mold consisted of two parts, considering the injection and vent holes in the design, that were printed using a 3D printer machine with rigid and flexible filaments. A manual syringe was used to prepare and inject the bone cement into the molds that were covered with release agent. The design of the implant and molds took 2.6 hours on average for each subject, the printing cost of the molds, the skull phantom and the syringe mixer was approximately $86, the bone cement was $ 315.0 per case without including the CT and the 3D designer expert costs. The method presented in this work has been applied to ten patients who had skull defect from 36 to 100 cm3. The implants were secured into position with metal fixation system. The surgical procedure took on average about 2 hours. Therefore, by using this procedure, surgeons have a flexible option for preoperatively implant preparing and building with excellent anatomic geometry, optimal fit and a stable reconstruction, reducing significantly the cost, surgical time and risk.
机译:颅骨缺损通常是由于脑部受伤,肿瘤摘除和创伤后进行减压颅骨切开术造成的,从而给患者带来严重的功能和美学问题。部分或全部重建(颅骨成形术)非常昂贵,特别是对于低收入患者。标准协议是使用复杂的CNC机器使用钛或Peek制成的预制植入物。在这项工作中,我们提出了一种使用基于聚甲基丙烯酸甲酯(PMMA),免费软件和快速原型制作的商业骨水泥设计和建造低成本异体植入物的方法。设计过程首先从对患者缺陷的高分辨率CT扫描中获取数据图像,然后使用3DSlicer仔细分割图像,然后将其导出为浊点格式。随后,使用软件Blender对缺损进行重建,设计植入物。为了避免干扰颅骨周围组织,有必要在植入物和颅骨轮廓之间产生一个内部偏移,范围为0.8到1 mm。考虑到设计中的注射孔和排气孔,模具由两部分组成,这些部分是使用带有刚性和柔性细丝的3D打印机打印的。使用手动注射器将骨水泥制备并注入覆盖有脱模剂的模具中。每个主题的植入物和模具的设计平均需要2.6个小时,模具,头骨模型和注射器搅拌器的印刷成本约为86美元,骨水泥为315.0美元/箱(不包括CT和3D设计器)专家费用。这项工作中介绍的方法已应用于颅骨缺损从36到100 cm的10例患者 3 。用金属固定系统将植入物固定到位。外科手术平均花费约2个小时。因此,通过使用此程序,外科医生可以灵活地选择术前准备的植入物,并以极好的解剖学几何形状,最佳的贴合度和稳定的重建来进行构建,从而显着降低了成本,手术时间和风险。

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