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Designing of Skull Defect Implants Using C~1 Rational Cubic Bezier and Offset Curves

机译:使用C〜1 Rational Cubic Bezier和偏移曲线设计颅骨缺陷植入物

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Some of the reasons to construct skull implant are due to head trauma after an accident or an injury or an infection or because of tumor invasion or when autogenous bone is not suitable for replacement after a decompressive craniectomy (DC). The main objective of our study is to develop a simple method to redesign missing parts of the skull. The procedure begins with segmentation, data approximation, and estimation process of the outer wall by a C~1 continuous curve. Its offset curve is used to generate the inner wall. A metaheuristic algorithm, called harmony search (HS) is a derivative-free real parameter optimization algorithm inspired from the musical improvisation process of searching for a perfect state of harmony. In this study, data approximation by a rational cubic Bezier function uses HS to optimize position of middle points and value of the weights. All the phases contribute significantly in making our proposed technique automated. Graphical examples of several postoperative skulls are displayed to show the effectiveness of our proposed method.
机译:构建颅骨植入物的一些原因是由于事故或损伤或感染或由于肿瘤侵袭或肿瘤侵袭或在减压颅骨切除术(DC)后不适合替代时的头部创伤或因肿瘤侵袭而受到损伤。我们研究的主要目标是开发一种简单的方法来重新设计头骨的缺失部分。该过程开始于C〜1连续曲线的外壁的分段,数据近似和估计过程。其偏移曲线用于产生内壁。一种称为Harmony Search(HS)的常规算法是一种无衍生的实际参数优化算法,其激发了搜索完美和谐状态的音乐即兴的过程。在该研究中,Rational Cubic Bezier函数的数据近似使用HS优化中间点的位置和权重的值。所有阶段都促进了自动化技术的贡献。展示了几个术后颅骨的图形示例,以显示了我们所提出的方法的有效性。

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