首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >REPOSITIONING BONE FRAGMENTS USING REGISTRATION OF PAIRED-POINTS AND ASSISTED-CONSTRAINTS IN VIRTUAL BONE REDUCTION SURGERY
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REPOSITIONING BONE FRAGMENTS USING REGISTRATION OF PAIRED-POINTS AND ASSISTED-CONSTRAINTS IN VIRTUAL BONE REDUCTION SURGERY

机译:使用配对点注册和虚拟骨减缩手术中的辅助约束重新定位骨片段

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摘要

When repositioning fractured bones in orthopedic surgery, correctness and accuracy are vital to allow the bone to regain the function and facial aesthetics of native uninjured bone. Various improvements to repositioning techniques have been proposed using points, curves, and surfaces to find correspondence between the fracture fragments. The aim of this study was to investigate the appropriate registration constraints for fractured bone reduction. One paired-point and three assisted-constraints registration methods were tested based on contralateral, landmark, and fracture line markers. The fractured proximal femur of a patient was used to compare the performance of these registration methods. Semi-automatic repositioning based on a singular value decomposition algorithm was performed to solve the problem of matching the data from two fragments. The repositioning results show that the proposed registration methods have great promise in assisting the user in defining the paired points, which is often difficult due to visibility limitations on images of fractured bone. Each of the proposed approaches was shown to yield different benefits. In terms of repositioning correctness, the use of contralateral constraints produced the smallest RMS error (1.853mm). The contralateral template method yielded the lowest fragment deviation error, but was not significantly superior to the other approaches. Fracture line-based constraints may potentially enable the relocation of fragments closest to pre-injured conditions.
机译:当在整形外科手术中重新定位骨折时,正确性和准确性对允许骨骼重新获得原生未加注骨的功能和面部美学至关重要。已经使用点,曲线和表面提出了对重新定位技术的各种改进,以在裂缝片段之间找到对应关系。本研究的目的是研究适当的骨折骨骼的登记约束。基于对侧,地标和裂缝线标记测试了一个配对点和三次辅助约束注册方法。患者的骨折近端股骨用于比较这些登记方法的性能。基于奇异值分解算法的半自动重新定位以解决与两个片段匹配数据的问题。重新定位结果表明,该拟议的登记方法具有很大的希望在协助用户定义配对点时,这通常是由于裂缝骨图像的可见性限制而难以实现。每个提出的方法都显示出产生不同的益处。在重新定位正确性方面,对侧约束的使用产生了最小的RMS误差(1.853mm)。对侧模板方法产生最低的片段偏差误差,但不显着优于其他方法。基于裂缝线的约束可能使得最接近预损伤条件的碎片迁移。

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