From the Division of Oral and Maxillofacial Surgery, Faculty of Dentistry, University of Hong Kong; and Department of Plastic Surgery, University of Texas, M. D. Anderson Cancer Center.
Plast Reconstr Surg. 2022 Mar 1;149(3):500e-510e. doi: 10.1097/PRS.0000000000008858.
Computer-assisted surgery has become the mainstream in mandibular reconstruction, but the lack of a standard measuring approach for spatial deviations of mandible hinders postoperative verification and the comparison of different subjects. This study aims to set up a comprehensive approach for measuring spatial deviations of computer-assisted mandibular reconstruction.
A systematic review was conducted to extract all measurements for computer-assisted mandibular reconstruction. Thereafter, eligible measurements were included in the authors' comprehensive approach, which categorized the measurements according to different anatomical structures and landmarks.
A total of 80 studies were included in the authors' systematic review, and 31 measurements were extracted. The authors established a comprehensive panel of anatomical landmarks to facilitate measurement, including parts, points, lines, planes, and angles. These measurements encompassed spatial deviations of the overall mandible, condyle, gonial angle, bone grafts, midline, surgical plate, osteotomy, and miscellaneous indicators. A calculation spreadsheet was developed to collect landmarks and compute deviations automatically with built-in formulas. Finally, a simplified panel of measurements was recommended for spatial deviations of mandibular reconstruction.
A comprehensive approach for measuring spatial deviations of computer-assisted mandibular reconstruction was established. Future studies will confirm this approach as an effective and scientific system for postoperative verification of computer-assisted mandibular reconstruction.
计算机辅助手术已成为下颌骨重建的主流,但由于缺乏下颌骨空间偏差的标准测量方法,阻碍了术后验证和不同个体之间的比较。本研究旨在建立一种综合的计算机辅助下颌骨重建的空间偏差测量方法。
系统地检索了所有计算机辅助下颌骨重建的测量方法。然后,将符合条件的测量方法纳入作者的综合方法中,根据不同的解剖结构和解剖标志对这些测量方法进行分类。
作者的系统综述共纳入 80 项研究,提取了 31 项测量方法。作者建立了一个全面的解剖标志面板,以方便测量,包括部分、点、线、面和角度。这些测量方法涵盖了整体下颌骨、髁突、下颌角、骨移植、中线、手术板、截骨术和其他指标的空间偏差。开发了一个计算电子表格,用于自动收集标志和计算偏差,并内置公式。最后,推荐了一种简化的下颌骨重建空间偏差测量方法。
建立了一种综合的计算机辅助下颌骨重建的空间偏差测量方法。未来的研究将证实这种方法是计算机辅助下颌骨重建术后验证的有效和科学的系统。