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首页> 外文期刊>Current Directions in Biomedical Engineering >A computer-assisted optimization approach for orthognathic surgery planning : Current Directions in Biomedical Engineering
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A computer-assisted optimization approach for orthognathic surgery planning : Current Directions in Biomedical Engineering

机译:正颌外科手术计划的计算机辅助优化方法:生物医学工程的当前方向

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Orthognathic surgery is used to treat misaligned jaws in adults by repositioning them. Intervention planning has to take into account different clinical, anatomical, functional, and aesthetic parameters to determine the optimal position. Current planning systems usually present 3D surface models obtained from a CT or Cone-Beam scan of the patient. The surgeon then interactively positions the upper and lower jaw. Thus, the surgeon can manually optimize anatomical aspects but has to consider functional and aesthetic effects simultaneously, which may be error-prone. We are developing a computer-assisted planning system which generates an optimized position for both jaws based on different analyses (cephalometric, plaster model, photostat) of the head, using a gradient descent algorithm. For this purpose, landmarks are interactively identified on a 3D surface representation. The system is developed as a plugin for MITK utilizing a knowledge base realized in the sematic web standard RDFS, which is queried with SPARQL requests. In a preliminary evaluation with five different cases we compare the automatically generated planning proposal with the planning results of a maxillofacial expert (ground truth). Good general agreement is observed, although more research for the identification and development of 3D cephalometric analyses is needed.
机译:正颌手术用于通过重新放置成人颚骨来治疗它们。干预计划必须考虑不同的临床,解剖,功能和美学参数,以确定最佳位置。当前的计划系统通常会提供从患者的CT或锥束扫描获得的3D表面模型。然后,外科医生以交互方式定位上颚和下颚。因此,外科医生可以手动优化解剖学方面,但是必须同时考虑功能和美学效果,这可能容易出错。我们正在开发一种计算机辅助计划系统,该系统可使用梯度下降算法,根据对头部的不同分析(头部测量,石膏模型,光敏剂),为两个颌骨生成最佳位置。为此,在3D表面表示上以交互方式标识地标。该系统是作为MITK的一个插件开发的,它利用在语义Web标准RDFS中实现的知识库进行查询,并通过SPARQL请求进行查询。在对五个不同案例的初步评估中,我们将自动生成的计划建议与颌面专家的计划结果(真实情况)进行了比较。尽管需要更多的研究来识别和开发3D头影测量分析,但总体上达成了良好的共识。

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