Gander Thomas, Essig Harald, Metzler Philipp, Lindhorst Daniel, Dubois Leander, Rücker Martin, Schumann Paul
Department of Oral and Maxillofacial Surgery, University Hospital of Zürich, Zürich, Switzerland.
Department of Oral and Maxillofacial Surgery, University Hospital of Zürich, Zürich, Switzerland.
J Craniomaxillofac Surg. 2015 Jan;43(1):126-30. doi: 10.1016/j.jcms.2014.10.024. Epub 2014 Oct 31.
Fractures of the orbital wall and floor can be challenging due to the demanding three-dimensional anatomy and limited intraoperative overview. Misfitting implants and inaccurate surgical technique may lead to visual disturbance and unaesthetic results. A new approach using individually manufactured titanium implants (KLS Martin, Group, Germany) for daily routine is presented in the current paper. Preoperative CT-scan data were processed in iPlan 3.0.5 (Brainlab, Feldkirchen, Germany) to generate a 3D-reconstruction of the affected orbit using the mirrored non-affected orbit as template and the extent of the patient specific implant (PSI) was outlined and three landmarks were positioned on the planned implant in order to allow easy control of the implant's position by intraoperative navigation. Superimposition allows the comparison of the postoperative result with the preoperative planning. Neither reoperation was indicated due to malposition of the implant and the ocular bulb nor visual impairments could be assessed. PSI allows precise reconstruction of orbital fractures by using a complete digital workflow and should be considered superior to manually bent titanium mesh implants.
由于眼眶壁和眶底复杂的三维解剖结构以及术中视野受限,其骨折修复颇具挑战性。植入物不匹配和手术技术不准确可能导致视觉障碍和外观不佳。本文介绍了一种在日常手术中使用个性化定制钛植入物(德国KLS Martin集团)的新方法。术前CT扫描数据在iPlan 3.0.5(德国费尔德kirchen市Brainlab公司)中进行处理,以未受影响的眼眶镜像为模板生成患侧眼眶的三维重建模型,勾勒出患者特异性植入物(PSI)的范围,并在计划植入物上设置三个标记点,以便在术中导航时轻松控制植入物位置。叠加技术可将术后结果与术前规划进行比较。未因植入物位置不当或眼球问题而进行再次手术,也未评估出视觉障碍。PSI通过完整的数字工作流程实现眼眶骨折的精确重建,应被视为优于手工弯曲钛网植入物。