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采用内置咬合支架作为定位参考的手术导板进行复杂面部畸形重建。

Complex facial deformity reconstruction with a surgical guide incorporating a built-in occlusal stent as the positioning reference.

作者信息

Fang Jing-Jing, Liu Jia-Kuang, Wu Tzu-Chieh, Lee Jing-Wei, Kuo Tai-Hong

机构信息

Department of Mechanical Engineering, Medical Device Innovation Center, National Cheng Kung University, Tainan, Taiwan.

出版信息

J Craniofac Surg. 2013 May;24(3):e260-5. doi: 10.1097/SCS.0b013e31828cbccc.

Abstract

Computer-aided design has gained increasing popularity in clinical practice, and the advent of rapid prototyping technology has further enhanced the quality and predictability of surgical outcomes. It provides target guides for complex bony reconstruction during surgery. Therefore, surgeons can efficiently and precisely target fracture restorations. Based on three-dimensional models generated from a computed tomographic scan, precise preoperative planning simulation on a computer is possible. Combining the interdisciplinary knowledge of surgeons and engineers, this study proposes a novel surgical guidance method that incorporates a built-in occlusal wafer that serves as the positioning reference.Two patients with complex facial deformity suffering from severe facial asymmetry problems were recruited. In vitro facial reconstruction was first rehearsed on physical models, where a customized surgical guide incorporating a built-in occlusal stent as the positioning reference was designed to implement the surgery plan. This study is intended to present the authors' preliminary experience in a complex facial reconstruction procedure. It suggests that in regions with less information, where intraoperative computed tomographic scans or navigation systems are not available, our approach could be an effective, expedient, straightforward aid to enhance surgical outcome in a complex facial repair.

摘要

计算机辅助设计在临床实践中越来越受欢迎,快速成型技术的出现进一步提高了手术效果的质量和可预测性。它为手术过程中的复杂骨重建提供了目标导向。因此,外科医生可以高效、精确地进行骨折修复。基于计算机断层扫描生成的三维模型,在计算机上进行精确的术前规划模拟成为可能。本研究结合外科医生和工程师的跨学科知识,提出了一种新颖的手术引导方法,该方法包含一个作为定位参考的内置咬合片。招募了两名患有严重面部不对称问题的复杂面部畸形患者。首先在实体模型上进行体外面部重建预演,设计了一个包含内置咬合支架作为定位参考的定制手术导板来实施手术计划。本研究旨在介绍作者在复杂面部重建手术中的初步经验。研究表明,在信息较少的区域,即术中无法进行计算机断层扫描或使用导航系统的情况下,我们的方法可能是一种有效、便捷、直接的辅助手段,有助于提高复杂面部修复手术的效果。

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