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Quantitative assessments of geometric errors for rapid prototyping in medical applications

机译:几何误差的定量评估,可用于医疗应用中的快速原型制作

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Purpose - In medical applications, it is crucial to evaluate the geometric accuracy of rapid prototyping (RP) models. Current research on evaluating geometric accuracy has focused on identifying two or more specific anatomical landmarks on the original structure and the RP model, and comparing their corresponding linear distances. Such kind of accuracy metrics is ambiguous and may induce misrepresentations of the actual errors. The purpose of this paper is to propose an alternative method and metrics to measure the accuracy of RP models. Design/methodology/approach - The authors propose an accuracy metric composed of two different approaches: a global accuracy evaluation using volumetric intersection indexes calculated over segmented Computed Tomography scans of the original object and the RP model. Second, a local error metric that is computed from the surfaces of the original object and the RP model. This local error is rendered in a 3D surface using a color code, that allow differentiating regions where the model is overestimated, underestimated, or correctly estimated. Global and local error measurements are performed after rigid body registration, segmentation and triangulation. Findings - The results show that the method can be applied to different objects without any modification, and provide simple, meaningful and precise quantitative indexes to measure the geometric accuracy of RP models. Originality/value - The paper presents a new approach to characterize the geometric errors in RP models using global indexes and a local surface distribution of the errors. It requires minimum human intervention and it can be applied without any modification to any kind of object.
机译:目的-在医疗应用中,评估快速原型(RP)模型的几何精度至关重要。当前评估几何精度的研究集中于在原始结构和RP模型上识别两个或多个特定的解剖界标,并比较它们相应的线性距离。这种准确性度量标准是模棱两可的,可能会导致对实际错误的错误陈述。本文的目的是提出一种替代方法和度量标准来衡量RP模型的准确性。设计/方法/方法-作者提出了一种精度度量,它由两种不同的方法组成:使用通过在原始对象和RP模型的分段CT扫描上计算出的体积相交指数进行的全局精度评估。其次,根据原始对象和RP模型的表面计算出的局部误差度量。使用颜色代码在3D曲面中渲染此局部误差,从而可以区分模型被高估,低估或正确估计的区域。在刚体对齐,分割和三角剖分之后执行全局和局部误差测量。结果-结果表明该方法无需进行任何修改即可应用于不同的对象,并提供简单,有意义和精确的定量指标来衡量RP模型的几何精度。原创性/价值-本文提出了一种使用全局索引和误差的局部表面分布来表征RP模型中几何误差的新方法。它需要最少的人工干预,并且可以在不对任何对象进行任何修改的情况下应用。

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