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Patient-Specific Reconstruction Utilizing Computer Assisted 3D Modelling for Partial Bone Flap Defect in Hybrid Cranioplasty

机译:利用计算机辅助三维建模对杂交颅骨成形术中偏骨皮瓣缺陷的患者特异性重建

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Autologous cranioplasty using a patient's original bone flap remain the commonest practice nowadays. However, partial bone flap defect is commonly encountered. Replacing the bone flap with pre-moulded synthetic bone flap is costly and not affordable to many patients. Hence most of the small to medium size defect was topped up with alloplastic material on a free hand basis intra-operatively which often resulted in inaccurate implant approximation with unsatisfactory cosmetic result. This study aims to evaluate implant accuracy and cosmetic outcome of cranioplasty candidates who underwent partial bone flap reconstruction utilising computer assisted 3D modelling. 3D images of the skull were obtained from post-craniectomy axial 1-mm spiral computed tomography (CT) scans and a virtual 3D model was generated using the Materialise Mimics software. The Materialise 3-Matic was then utilised to design a patient-specific implant. Prefabrication of the implant was performed by the 3D Objet printer, and a negative gypsum mold was created with the prefabricated cranial implant. Intraoperatively, a hybrid polymethyl methacrylate (PMMA)-autologous cranial implant was produced using the gypsum mold, and fit into the cranial defect. This study is still ongoing at the moment. To date, two men has underwent partial bone flap reconstruction utilising this technique and both revealed satisfactory implant alignment with favourable cosmesis. Mean implant size was 12cm~2, and the mean duration of intraoperative reconstruction for the partial bone flap defect was 40 minutes. No significant complication was reported. As a conclusion, this new technique and approach resulted in satisfactory implant alignment and favourable cosmetic outcome. However, more study samples are needed to increase the validity of the study results.
机译:使用患者原始骨瓣的自体颅骨成形术仍然是现在最常见的实践。然而,通常遇到部分骨瓣缺陷。用预成型的合成骨皮瓣替代骨瓣昂贵,而且对许多患者来说是不可能的。因此,大多数小于中等大小的缺陷在可操作性的自由手段上与单体塑料材料一起突出,这通常导致植入物的植入物近似不准确,具有不令人满意的化妆品结果。本研究旨在评估利用计算机辅助3D建模的局部骨瓣重建的颅骨成形术候选者的植入准确性和化妆品。从颅骨切除术后1-mm螺旋计算断层扫描(CT)扫描和虚拟3D模型中获得了颅骨的图像,并使用换体模拟软件产生虚拟3D模型。然后利用材料3-Matic来设计患者特异性植入物。通过3D Objet打印机进行植入物的预制,并且使用预制的颅植入来创建负石膏模具。术中,使用石膏模具生产杂交聚甲基丙烯酸甲酯(PMMA) - 造林颅植入物,并配合进入颅骨缺陷。这项研究目前仍在继续。迄今为止,两名男性已经接受了利用这种技术的部分骨瓣重建,并透露了令人满意的植入物与良好的植入效应。平均植入大小为12cm〜2,部分骨瓣缺损的术中重建的平均持续时间为40分钟。没有报告显着的并发症。作为结论,这种新技术和方法导致了令人满意的植入式对准和有利的化妆品结果。然而,需要更多的研究样本来增加研究结果的有效性。

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