Department of Plastic and Reconstructive Surgery, University of Texas Southwestern School of Medicine.
Childrens Health Systems of Texas, Analytical Imaging and Modeling Center, Dallas, TX.
J Craniofac Surg. 2022 Sep 1;33(6):e628-e632. doi: 10.1097/SCS.0000000000008699. Epub 2022 Aug 2.
Craniofacial fibrous dysplasia (FD) involves thickening of the skull and facial bones, causing asymmetry and distortion of overlying soft tissues. Surgical contouring is often performed with rotary bur or osteotome, with the goal of matching contralateral unaffected anatomy. This is made technically challenging by having no direct visualization of contralateral structures, and the desire to control depth of resection to match the contour of the unaffected side. In our report, a 13-year-old male presented for surgical evaluation of craniofacial FD affecting the right parietal/temporal bones. A novel virtual surgical planning approach of premade drilling template with numerous pilot guide holes was used to assist bone debulking. The pilot holes allowed precise burring of the dysplastic bone. The patient achieved excellent calvarial contour symmetry without unintended intracranial extension. We believe that virtual surgical planning and drilling depth guides are effective tools in the reconstruction of craniofacial FD.
颅面纤维结构不良(FD)涉及颅骨和面部骨骼增厚,导致覆盖其上的软组织不对称和变形。手术整形常采用旋转钻头或骨刀进行,目的是与对侧未受影响的解剖结构相匹配。由于无法直接观察对侧结构,并且希望控制切除深度以匹配未受影响侧的轮廓,这在技术上具有挑战性。在我们的报告中,一名 13 岁男性因颅面 FD 影响右侧顶颞骨而接受手术评估。采用预制钻孔模板和多个导孔的虚拟手术规划方法来辅助骨切除术。导孔允许对畸形骨进行精确的打磨。患者颅骨轮廓对称性良好,无意外颅内延伸。我们认为,虚拟手术规划和钻孔深度引导是颅面 FD 重建的有效工具。