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Accuracy Evaluation of 3D Reconstruction of Transfemoral Residual Limb Model Using Basic Spline Interpolation

机译:使用基本花键插值的经熔残余肢体模型三维重建的准确性评估

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In this paper, a study on the accurateness of 3D reconstruction for transfemorai residual limb based on Magnetic Resonance Imaging (MRI) using basic spline (B-Spline) interpolation feature is presented. Many researches have constructed 3D models by using the Non-Uniform Rational B-Spline (NURBS) approach; however, almost none of those studies have elaborated in detail the methodology used in the project and the accuracy of the model's volume against the residual limb volume. This study focuses on the optimization of the residual limb model's volume by investigating the effect of spline points on the volume value. This project is divided into 3 phases, namely pre-segmentation, segmentation, and 3D reconstruction. However, this study focuses on the segmentation phase in which four different spline point numbers are chosen, namely 72, 36, 24, and 12 points; CAD software CREO Parametric (PTC) was used for this process. A higher number of spline points achieved greater accuracy for the model's volume. The volume (mm3) of the 3D model with the specified number of spline points was evaluated by comparing it with the volume of the 3D model created by using image processing tools from MATLAB (Math Works). The results show the increment in accuracy of the volume value when the number of spline points is increased. The highest accuracy in terms of volume value is achieved when the model is created with 72 and 36 spline points, with an average error percentage of 6.36%, which realized the hypothesis. The results indicate that CAD software, which is a technical drawing tool, can also be used in the biomedical field to design 3D models of the human anatomy with high accuracy, if the software includes a spline interpolation feature.
机译:在本文中,对于transfemorai残肢使用基本样条基于磁共振成像(MRI)对三维重建的准确性的一项研究(B样条曲线)内插特征被呈现。许多研究通过使用非均匀有理B样条(NURBS)的方法构建的3D模型;然而,几乎没有那些研究中详细阐述了在项目和模型对残肢卷卷的准确性使用的方法。本研究的重点残肢模型的体积的优化通过调查的样点上的音量值的影响。该项目被划分成3个阶段,即预分割,分割,及三维重建。然而,该研究的重点是在四个不同的花键点编号被选择,即72,36,24的分割相位,和12分; CAD软件CREO参数(PTC)用于此过程。数字越大的样点达到更高的精度为模型的体积。与花键点指定数目的3D模型的体积(mm 3)通过将其与通过使用图像处理工具从MATLAB(Math Works公司)所创建的3D模型的体积进行比较评价。结果显示在容积值的精度的增量时花键点的数量增加。当与72个36花键点被创建的模型在容积值方面的最高准确度实现,具有6.36%的平均误差百分比,这实现了假设。结果表明,CAD软件,这是一个技术的绘图工具,也可以在生物医学领域用来设计3D模型精度高的人体解剖学的,如果软件包括样条插值功能。

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