Suojanen Juho, Leikola Junnu, Stoor Patricia
Department of Oral and Maxillo-Facial Diseases (Head: Risto Kontio) at the University of Helsinki and Helsinki University Central Hospital, Haartmaninkatu 4E, 00029 HUS, Helsinki, Finland.
Cleft Lip and Palate and Craniofacial Centre, Helsinki University Central Hospital, Sibeliuksenkatu 10, 00029 HUS, Finland.
J Craniomaxillofac Surg. 2016 Dec;44(12):1913-1916. doi: 10.1016/j.jcms.2016.09.008. Epub 2016 Sep 23.
The use of virtual surgery, patient-specific saw and drill guides, and custom-made osteosynthesis plates is rapidly spreading from deformity surgery to orthognathic surgery. Most of the commercially available systems are using computer-aided design/computer-aided manufacture (CAD/CAM) wafers to produce patient-specific saw guides. However, most plate systems provided are still the conventional "in stock" mini plates that can be individually designed by pre-bending according to the stereolithographic model of the patient. Custom made three-dimensional (3D) printed implants have earlier been demonstrated to be an ideal solution in deformity surgery and in reconstruction of complex posttraumatic cases. In this study, we report the novel use of patient-specific saw and drill guides combined with patient-specific 3D titanium alloy implants as a fixation system in maxillary movement after Le Fort I and bimaxillary osteotomies (n = 32). The implants were individually designed for each patient to follow anatomical structures and to provide exact positioning and stability of the repositioned maxilla.
虚拟手术、患者特异性锯导板和钻孔导板以及定制接骨板的应用正在迅速从畸形手术扩展到正颌手术。大多数市售系统使用计算机辅助设计/计算机辅助制造(CAD/CAM)薄片来制作患者特异性锯导板。然而,所提供的大多数接骨板系统仍然是传统的“现货”微型接骨板,可根据患者的立体光刻模型通过预弯进行个性化设计。定制的三维(3D)打印植入物早前已被证明是畸形手术和复杂创伤后病例重建的理想解决方案。在本研究中,我们报告了将患者特异性锯导板和钻孔导板与患者特异性3D钛合金植入物结合作为Le Fort I型截骨术和双颌截骨术后上颌骨移动固定系统的新应用(n = 32)。植入物针对每位患者进行个性化设计,以贴合解剖结构,并为重新定位的上颌骨提供精确的定位和稳定性。