Byun Soo-Hwan, Park Sang-Yoon, Yi Sang-Min, Park In-Young, On Sung-Woon, Jeong Chun-Ki, Kim Jong-Cheol, Yang Byoung-Eun
Department of Oral and Maxillofacial Surgery, Hallym University Sacred Heart Hospital, Anyang 14066, Republic of Korea.
Department of Artificial Intelligence and Robotics in Dentistry, Graduate School of Clinical Dentistry, Hallym University, Chuncheon 24252, Republic of Korea.
Bioengineering (Basel). 2023 Aug 1;10(8):914. doi: 10.3390/bioengineering10080914.
Maxillofacial skeletal surgery often involves the use of patient-specific implants. However, errors in obtaining patient data and designing and manufacturing patient-specific plates and guides can occur even with accurate virtual surgery. To address these errors, bespoke Snowman plates were designed to allow movement of the mandible. This study aimed to compare the stability of bespoke four-hole miniplates with that of a bespoke Snowman plate for bilateral sagittal split ramus osteotomy (SSRO), and to present a method to investigate joint cavity changes, as well as superimpose virtual and actual surgical images of the mandible. This retrospective study included 22 patients who met the inclusion criteria and underwent orthognathic surgery at a university hospital between 2015 and 2018. Two groups were formed on the basis of the plates used: a control group with four-hole bespoke plates and a study group with bespoke Snowman plates. Stability was assessed by measuring the condyle-fossa space and superimposing three-dimensional virtual surgery images on postoperative cone-beam computed tomography (CBCT) scans. No significant differences were observed in the condyle-fossa space preoperatively and 1 year postoperatively between the control and study groups. Superimposing virtual surgery and CBCT scans revealed minimal differences in the landmark points, with no variation between groups or timepoints. The use of bespoke Snowman plates for stabilizing the mandible following SSRO exhibited clinical stability and reliability similar to those with bespoke four-hole plates. Additionally, a novel method was introduced to evaluate skeletal stability by separately analyzing the condyle-fossa gap changes and assessing the mandibular position.
颌面骨骼手术通常需要使用定制植入物。然而,即使进行精确的虚拟手术,在获取患者数据以及设计和制造定制钢板及导向器时仍可能出现误差。为解决这些误差问题,设计了定制的雪人钢板以允许下颌骨移动。本研究旨在比较定制四孔微型钢板与定制雪人钢板用于双侧矢状劈开下颌支截骨术(SSRO)的稳定性,并提出一种研究关节腔变化以及叠加下颌骨虚拟手术图像和实际手术图像的方法。这项回顾性研究纳入了22例符合纳入标准且于2015年至2018年期间在一所大学医院接受正颌手术的患者。根据所使用的钢板分为两组:使用定制四孔钢板的对照组和使用定制雪人钢板的研究组。通过测量髁突 - 关节窝间隙并将三维虚拟手术图像叠加到术后锥形束计算机断层扫描(CBCT)上评估稳定性。对照组和研究组术前及术后1年的髁突 - 关节窝间隙未观察到显著差异。虚拟手术与CBCT扫描的叠加显示标志点差异极小,组间及时间点之间均无变化。在SSRO术后使用定制雪人钢板稳定下颌骨表现出与定制四孔钢板相似的临床稳定性和可靠性。此外,还引入了一种新方法,通过分别分析髁突 - 关节窝间隙变化和评估下颌位置来评估骨骼稳定性。