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首页> 外文期刊>Journal of Oral and Maxillofacial Surgery >Patient-specific polyetheretherketone facial implants in a computer-aided planning workflow
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Patient-specific polyetheretherketone facial implants in a computer-aided planning workflow

机译:计算机辅助计划工作流程中针对患者的聚醚醚酮面部植入物

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Purpose In the present study, we report an innovative workflow using polyetheretherketone (PEEK) patient-specific implants for esthetic corrections in the facial region through onlay grafting. The planning includes implant design according to virtual osteotomy and generation of a subtraction volume. The implant design was refined by stepwise changing the implant geometry according to soft tissue simulations. Materials and Methods One patient was scanned using computed tomography. PEEK implants were interactively designed and manufactured using rapid prototyping techniques. Positioning intraoperatively was assisted by computer-aided navigation. Two months after surgery, a 3-dimensional surface model of the patient's face was generated using photogrammetry. Finally, the Hausdorff distance calculation was used to quantify the overall error, encompassing the failures in soft tissue simulation and implantation. Results The implant positioning process during surgery was satisfactory. The simulated soft tissue surface and the photogrammetry scan of the patient showed a high correspondence, especially where the skin covered the implants. The mean total error (Hausdorff distance) was 0.81 ± 1.00 mm (median 0.48, interquartile range 1.11). The spatial deviation remained less than 0.7 mm for the vast majority of points. Conclusions The proposed workflow provides a complete computer-aided design, computer-aided manufacturing, and computer-aided surgery chain for implant design, allowing for soft tissue simulation, fabrication of patient-specific implants, and image-guided surgery to position the implants. Much of the surgical complexity resulting from osteotomies of the zygoma, chin, or mandibular angle might be transferred into the planning phase of patient-specific implants.
机译:目的在本研究中,我们报告了一种创新的工作流程,该工作流程使用了聚醚醚酮(PEEK)患者特定的植入物,用于通过嵌体移植进行面部区域的美学矫正。该计划包括根据虚拟截骨术和减法体积的产生进行植入物设计。通过根据软组织模拟逐步更改植入物的几何形状,可以改进植入物的设计。材料和方法使用计算机断层扫描对一名患者进行了扫描。 PEEK植入物是使用快速成型技术交互式设计和制造的。术中定位由计算机辅助导航协助。手术两个月后,使用摄影测量法生成了患者面部的三维表面模型。最后,使用Hausdorff距离计算来量化整体误差,包括软组织模拟和植入中的失败。结果手术中植入物定位过程令人满意。模拟的软组织表面和患者的摄影测量扫描显示出很高的对应性,尤其是在皮肤覆盖植入物的地方。平均总误差(Hausdorff距离)为0.81±1.00 mm(中值0.48,四分位间距1.11)。绝大多数点的空间偏差保持在0.7 mm以下。结论拟议的工作流程为植入物设计提供了完整的计算机辅助设计,计算机辅助制造和计算机辅助手术链,从而可以进行软组织模拟,患者专用植入物的制造以及图像引导手术来定位植入物。由骨瘤,下巴或下颌角截骨术引起的大部分外科手术复杂性可能会转移到患者特定植入物的计划阶段。

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