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Three-Dimensional (3D) Model-Based Lower Limb Stump Automatic Orientation

机译:基于三维(3D)模型的下肢树桩自动方向

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摘要

Modern prosthetics largely relies upon visual data processing and implementation technologies such as 3D scanning, mathematical modeling, computer-aided design (CAD) tools, and 3D-printing during all stages from design to fabrication. Despite the intensive advancement of these technologies, once the prosthetic socket model is obtained by 3D scanning, its appropriate orientation and positioning remain largely the responsibility of an expert requiring substantial manual effort. In this paper, an automated orientation algorithm based on the adjustment of the 3D-model virtual anatomical axis of the tibia along with the vertical axis of the rectangular coordinates in three-dimensional space is proposed. The suggested algorithm is implemented, tested for performance and experimentally validated by explicit comparisons against an expert assessment.
机译:现代假肢主要依赖于视觉数据处理和实现技术,如3D扫描,数学建模,计算机辅助设计(CAD)工具,以及在所有阶段都依赖于设计到制造的3D打印。尽管采用3D扫描获得了假体套接字模型,但是,一旦通过3D扫描获得了假体套接字模型,它的适当定位和定位仍然很大程度上是需要大量手动努力的专家的责任。在本文中,提出了一种基于胫骨3D模型虚拟解剖轴的自动取向算法以及三维空间中的矩形坐标的垂直轴。实施了建议的算法,通过针对专家评估进行明确的比较测试,进行性能并通过实验验证。

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