Vlachopoulos Lazaros, Schweizer Andreas, Meyer Dominik C, Gerber Christian, Fürnstahl Philipp
Computer Assisted Research and Development Group, Balgrist University Hospital, University of Zürich, Zürich, Switzerland; Computer Vision Laboratory, ETH Zürich (Swiss Federal Institute of Technology Zürich), Zürich, Switzerland.
Department of Orthopaedics, Balgrist University Hospital, University of Zürich, Zürich, Switzerland.
J Shoulder Elbow Surg. 2016 Dec;25(12):2040-2047. doi: 10.1016/j.jse.2016.04.038. Epub 2016 Aug 5.
Corrective osteotomies of malunited fractures of the proximal and distal humerus are among the most demanding orthopedic procedures. Whereas the restoration of the normal humeral anatomy is the ultimate goal, the quantification of the deformity as well as the transfer of the preoperative plan is challenging. The purpose of this study was to provide a guideline for 3-dimensional (3D) corrective osteotomies of malunited intra-articular fractures of the humerus and a detailed overview of existing and novel instruments to enlarge the toolkit for 3D preoperative planning and intraoperative realization using patient-specific guides.
We describe the preoperative 3D deformity analysis, relevant considerations for the preoperative plan, design of the patient-specific guides, and surgical technique of corrective osteotomies of the humerus.
The presented technique demonstrates the benefit of computer-assisted surgery for complex osteotomies of the humerus from a preoperative deformity analysis to the creation of feasible surgical procedures and the generation of patient-specific guides.
A 3D analysis of a post-traumatic deformity of the humerus, 3D preoperative planning, and use of patient-specific guides facilitate corrective osteotomies of complex malunited humeral fractures.
肱骨近端和远端骨折畸形愈合的矫正截骨术是最具挑战性的骨科手术之一。虽然恢复肱骨的正常解剖结构是最终目标,但畸形的量化以及术前计划的传递具有挑战性。本研究的目的是为肱骨关节内骨折畸形愈合的三维(3D)矫正截骨术提供指导方针,并详细概述现有和新型器械,以扩大使用患者特异性导板进行3D术前规划和术中实施的工具包。
我们描述了术前3D畸形分析、术前计划的相关考虑因素、患者特异性导板的设计以及肱骨矫正截骨术的手术技术。
所展示的技术证明了计算机辅助手术在肱骨复杂截骨术中的益处,从术前畸形分析到创建可行的手术程序以及生成患者特异性导板。
对肱骨创伤后畸形进行3D分析、3D术前规划以及使用患者特异性导板有助于复杂肱骨骨折畸形愈合的矫正截骨术。