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Virtual method to compare treatment options to assist maxillofacial surgery planning and decision making process for implant and screw placement

机译:比较治疗方案的虚拟方法,以协助颌面外科手术计划以及植入物和螺钉放置的决策过程

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摘要

The paper explores a biomodelling method comprising of several visual and virtual reality methods to assess different surgical procedures using the computer. A computer tomography (CT) medical scan of a patient was obtained and was converted into a three dimensional virtual biomodel. This mandible biomodel was then subjected to graphical post-processing to split it into two portions mimicking actual surgery to correct jaw deformity. In such cases, screws and/or implants are used in various positions to link the two parts of the mandible. In this evaluation all possible configurations of a 5 holes L-plate implant (Synthes) were computed to evaluate the various surgical approaches. The nine configurations were ordered on stability of treatment based on the least amount of movement between the two bone parts upon receiving a virtual force of 500N simulating a jaw bite. Although the best treatment method was highlighted for this particular case but other factors such as bone thickness need to be incorporated in order to further substantiate this option. This system could be used in future by maxillofacial surgeons as a pre-surgical planning tool to decide which of the various available configurations would be suitable for a given patient based on the patients' medical scan data. Such results would also pave the way for Evidence based Medicine practice (EBP) where the decision for a particular treatment approach would be guided and strengthened by data from virtual simulation studies of the outcome of the surgery. © 2011 Springer-Verlag.
机译:本文探讨了一种生物建模方法,该方法包括几种视觉和虚拟现实方法,以使用计算机评估不同的手术程序。获得了患者的计算机断层扫描(CT)医学扫描,并将其转换为三维虚拟生物模型。然后对该下颌骨生物模型进行图形化后处理,将其分成模仿实际手术以纠正下颌畸形的两个部分。在这种情况下,螺钉和/或植入物可在各种位置使用以连接下颌骨的两个部分。在该评估中,计算了5孔L板植入物(Synthes)的所有可能配置,以评估各种手术方法。在接收到500N的虚拟力(模拟颚部咬合力)后,基于两个骨骼部分之间最小的运动量,根据治疗的稳定性对这9种配置进行了排序。尽管针对这种特殊情况强调了最佳治疗方法,但需要结合其他因素(例如骨骼厚度)以进一步证实该选项。将来颌面外科医生可以将该系统用作术前计划工具,根据患者的医学扫描数据来确定各种可用配置中的哪种适合给定患者。这些结果还将为循证医学实践(EBP)铺平道路,在该实践中,将通过对手术结果进行虚拟模拟研究的数据来指导和加强针对特定治疗方法的决策。 ©2011 Springer-Verlag。

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