Department of Orthopaedics, First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310003, China.
Int J Med Robot. 2012 Dec;8(4):476-82. doi: 10.1002/rcs.1453. Epub 2012 Aug 15.
Stabilization of rare unstable pelvic fractures in the case of sacral fractures and iliosacral joint dislocations can be tricky. 3D reconstruction and reverse engineering templates may be used to increase the accuracy of screw placement.
Computed tomography (CT) images were used to design the template for 16 consecutive patients with unstable pelvic ring fractures, which were used to guide the screw placement. Another 10 patients received screw placement under conventional fluoroscopy. The screw position, radiation exposure, and surgery time were compared between the two groups.
Personalized image-based templates had better correct screw positions (P < 0.05), reduced radiation exposure (P < 0.01), and shorter surgery time (P < 0.05) compared with the conventional group.
Personalized image-based templates for iliosacral screw insertions can increase the sacral lag screw placement accuracy, reduce radiation exposure, and shorten surgery time compared with traditional fluoroscopic methods.
骶骨骨折和骶髂关节脱位时,稳定罕见的不稳定骨盆骨折较为棘手。三维重建和逆向工程模板可用于提高螺钉放置的准确性。
16 例不稳定骨盆环骨折患者采用 CT 图像设计模板,指导螺钉放置。另外 10 例患者在常规透视下进行螺钉放置。比较两组患者的螺钉位置、辐射暴露和手术时间。
与传统组相比,基于个体化图像的模板具有更好的正确螺钉位置(P<0.05)、减少的辐射暴露(P<0.01)和更短的手术时间(P<0.05)。
与传统透视方法相比,基于个体化图像的骶髂螺钉插入的个性化模板可提高骶骨拉力螺钉放置的准确性,减少辐射暴露,并缩短手术时间。