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RapidSplint: virtual splint generation for orthognathic surgery – results of a pilot series

机译:RapidSplint:用于正颌外科手术的虚拟夹板生成–飞行员系列的结果

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Background : Within the domain of craniomaxillofacial surgery, orthognathic surgery is a special field dedicated to the correction of dentofacial anomalies resulting from skeletal malocclusion. Generally, in such cases, an interdisciplinary orthodontic and surgical treatment approach is required. After initial orthodontic alignment of the dental arches, skeletal discrepancies of the jaws can be corrected by distinct surgical strategies and procedures in order to achieve correct occlusal relations, as well as facial balance and harmony within individualized treatment concepts. To transfer the preoperative surgical planning and reposition the mobilized dental arches with optimal occlusal relations, surgical splints are typically used. For this purpose, different strategies have been described which use one or more splints. Traditionally, these splints are manufactured by a dental technician based on patient-specific dental casts; however, computer-assisted technologies have gained increasing importance with respect to preoperative planning and its subsequent surgical transfer.Methods : In a pilot study of 10 patients undergoing orthognathic corrections by a one-splint strategy, two final occlusal splints were produced for each patient and compared with respect to their clinical usability. One splint was manufactured in the traditional way by a dental technician according to the preoperative surgical planning. After performing a CBCT scan of the patient’s dental casts, a second splint was designed virtually by an engineer and surgeon working together, according to the desired final occlusion. For this purpose, RapidSplint?, a custom-made software platform, was used. After post-processing and conversion of the datasets into .stl files, the splints were fabricated by the PolyJet procedure using photo polymerization. During surgery, both splints were inserted after mobilization of the dental arches then compared with respect to their clinical usability according to the occlusal fitting.Results : Using the workflow described above, virtual splints could be designed and manufactured for all patients in this pilot study. Eight of 10 virtual splints could be used clinically to achieve and maintain final occlusion after orthognathic surgery. In two cases virtual splints were not usable due to insufficient occlusal fitting, and even two of the traditional splints were not clinically usable. In five patients where both types of splints were available, their occlusal fitting was assessed as being equivalent, and in one case the virtual splint showed even better occlusal fitting than the traditional splint. In one case where no traditional splint was available, the virtual splint proved to be helpful in achieving the final occlusion.Conclusions : In this pilot study it was demonstrated that clinically usable splints for orthognathic surgery can be produced by computer-assisted technology. Virtual splint design was realized by RapidSplint?, an in-house software platform which might contribute in future to shorten preoperative workflows for the production of orthognathic surgical splints.
机译:背景:在颅颌面部外科手术领域,正颌外科是一个专门领域,致力于矫正因骨骼错位引起的牙颌面异常。通常,在这种情况下,需要跨学科的正畸和外科治疗方法。在最初对牙齿弓进行正畸对齐之后,可以通过不同的手术策略和程序纠正颌骨的骨骼差异,以实现正确的咬合关系,以及在个性化的治疗概念内实现面部平衡和和谐。为了转移术前手术计划并以最佳咬合关系重新定位动员的牙弓,通常使用手术夹板。为此目的,已经描述了使用一个或多个夹板的不同策略。传统上,这些夹板是由牙科技术人员根据患者特定的牙模制造的。然而,计算机辅助技术在术前计划及其后续手术转移方面的重要性日益提高。方法:在一项采用单瓣策略矫正正颌矫正术的10例患者的初步研究中,产生了两个最终的咬合夹板每位患者,并就其临床可用性进行比较。一名夹板是由牙科技师按照术前手术计划以传统方式制造的。在对患者的牙模进行CBCT扫描后,实际上是由工程师和外科医生根据所需的最终咬合设计了第二个夹板。为此,使用了定制的软件平台RapidSplint?。在对数据集进行后处理并将其转换为.stl文件后,通过使用光聚合的PolyJet程序来制作夹板。在手术过程中,在移动牙弓后插入两个夹板,然后根据咬合情况比较它们的临床可用性。结果:使用上述工作流程,可以为所有患者设计和制造虚拟夹板。试验研究。 10个虚拟夹板中的8个可在临床上用于正颌外科手术后达到并维持最终的咬合。在两种情况下,由于咬合配合不足,无法使用虚拟夹板,甚至有两个传统夹板在临床上也不可用。在两种类型的夹板均可用的五名患者中,他们的咬合拟合被评估为等效,并且在一种情况下,虚拟夹板显示出比传统夹板更好的咬合拟合。在没有传统夹板的情况下,虚拟夹板被证明有助于实现最终的咬合。结论:在该初步研究中,证明了可以通过计算机辅助技术生产用于正颌外科的临床可用夹板。虚拟夹板设计是由RapidSplint?实现的,RapidSplint?是内部软件平台,将来可能有助于缩短生产正颌外科夹板的术前工作流程。

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