PLA-based In house 3D-printed intraoperative surgical model is a time- and cost-efficient approach for mandibular reconstruction.

K. Bangun, V. Tania, Windy Cendrick, J. Halim, P. Atmodiwirjo, Mohamad Rachadian Ramadan, P. Kreshanti
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Abstract

Introduction. Patients with malignant mandibular reconstructive cases, commonly people often have contralateral normal side to act as a template during preoperative computer-assisted planning. Moreover, the development of Computer-Assisted Design/ Manufacturing Technology aids in the process to produce a template for cutting and/or custom fixation (pre-bending). Therefore, CAD/CAM technology has been greatly used in enhancing accuracy and reducing operation time, and minimizing possible complications due to thorough accurate planning. Method. This study displayed 5 case series incorporating In-House 3D Printed Models cases. 3D imaging was retrieved from CT scan DICOM Files, the file will then be processed to recreate a symmetrical post operative look. Furthermore, the rendered 3D File will be printed with the in-house printer using polylactic acid (PLA) Material. A sterilized 3D printed model will then be used intraoperatively to allow pre-bending of any implants for the case. Then the process, time, and cost of each case were documented. Results 100% success rate in processing all 5 cases into 3D Printed Model. The printing time consumes on average 7 hours,39 minutes (ranging from 5 hours, 59 minutes up to 9 hours, 43 minutes) and costs on average $ 1.83 on each print (ranging from $ 1.69 up to $ 2.10). Conclusion. 3D Printed reconstructed models as guidance to aid the surgeon from visualization of the post-operative look, up to intraoperative pre-bending of the implants used. Thus allowing better efficiency in reducing operation time, better post-operative look, and fewer complications. However, a bigger sample RCT will allow more detailed information.
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基于pla的内部3d打印术中手术模型是一种既省时又经济的下颌重建方法。
介绍。在恶性下颌骨再造术的病例中,一般人在术前常以对侧正常侧作为模板进行计算机辅助规划。此外,计算机辅助设计/制造技术的发展有助于生产用于切割和/或定制固定(预弯曲)的模板。因此,CAD/CAM技术在提高精度和缩短操作时间方面得到了广泛的应用,并且由于全面准确的规划,可以最大限度地减少可能出现的并发症。方法。本研究展示了5个案例系列,包括内部3D打印模型案例。从CT扫描的DICOM文件中检索3D图像,然后对该文件进行处理,以重建对称的术后外观。此外,渲染的3D文件将使用内部打印机使用聚乳酸(PLA)材料打印。灭菌的3D打印模型将在术中使用,以便预先弯曲任何植入物。然后记录每个病例的过程、时间和成本。结果5例病例3D打印模型的成功率均为100%。打印时间平均为7小时39分钟(从5小时59分钟到9小时43分钟不等),每张打印的平均成本为1.83美元(从1.69美元到2.10美元不等)。结论:3D打印重建模型作为指导,可以帮助外科医生从术后外观的可视化到术中所使用的植入物的预弯曲。从而提高手术效率,缩短手术时间,改善术后美观,减少并发症。然而,更大的样本RCT将提供更详细的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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审稿时长
14 weeks
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