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Statistical humerus atlas for optimal design of Asian-specific humerus implants and associated intramedullary robotics

机译:统计肱骨地图集,用于亚洲特定肱骨植入物的最佳设计和相关的髓内机器人

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The statistical shape analysis of population-specific anatomical structures plays a pivotal role in both implant design and associated dedicated surgical robotic instruments. The sizes of current off-the-shelf humerus implants are unable to accommodate Asian patients since they are mainly produced for the American and European countries based on locally collected data. In this paper, an algorithm to construct a statistical humerus model is proposed so as to create a reference model for the development of humerus implants that conforms to the Asian population, and for the related design of snake-like robot for intramedullary procedures. The statistical humerus model is constructed from 14 CT datasets of male patients by implementing a three-step simplified method with improved alignment process. We have further constructed the statistical atlas showing the internal anatomy of humerus by adopting a spherical harmonics based method for the aim of developing intramedullary based implants used for humerus fixation. The validation results demonstrate that the proposed method significantly improves the efficiency of alignment without compromising the accuracy of the atlas. A comparison between the atlas constructed using the proposed method and that constructed utilizing the framework of spherical harmonics is further illustrated.
机译:人口特异性解剖结构的统计形状分析在植入物设计和相关的专用外科机器人仪器中起着枢轴作用。当地的现有肱骨植入物的尺寸无法容纳亚洲患者,因为它们主要是根据当地收集的数据为美国和欧洲国家制作的。本文提出了一种构建统计肱骨模型的算法,以便为符合亚洲群体的肱骨植入物的发展创建参考模型,以及用于髓内程序的蛇状机器人的相关设计。统计肱骨模型通过实施具有改进的对准过程的三步简化方法来构建来自男性患者的14个CT数据集。我们进一步构建了统计的阿特拉斯,通过采用基于球形谐波的方法来构建统治肱骨的内部解剖学,以提高用于肱骨固定的髓内植入物。验证结果表明,所提出的方法显着提高了对准效率而不损害地图集的准确性。进一步说明了使用所提出的方法构造的图案与利用球面谐波框架构造的图表之间的比较。

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