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Object Specific Trajectory Optimization for Industrial X-ray Computed Tomography

机译:工业X射线计算机断层扫描的特定对象轨迹优化

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摘要

In industrial settings, X-ray computed tomography scans are a common tool for inspection of objects. Often the object can not be imaged using standard circular or helical trajectories because of constraints in space or time. Compared to medical applications the variance in size and materials is much larger. Adapting the acquisition trajectory to the object is beneficial and sometimes inevitable. There are currently no sophisticated methods for this adoption. Typically the operator places the object according to his best knowledge. We propose a detectability index based optimization algorithm which determines the scan trajectory on the basis of a CAD-model of the object. The detectability index is computed solely from simulated projections for multiple user defined features. By adapting the features the algorithm is adapted to different imaging tasks. Performance of simulated and measured data was qualitatively and quantitatively assessed.The results illustrate that our algorithm not only allows more accurate detection of features, but also delivers images with high overall quality in comparison to standard trajectory reconstructions. This work enables to reduce the number of projections and in consequence scan time by introducing an optimization algorithm to compose an object specific trajectory.
机译:在工业环境中,X射线计算机断层扫描是检查对象的常用工具。由于空间或时间的限制,通常无法使用标准的圆形或螺旋形轨迹对物体成像。与医学应用相比,尺寸和材料的差异要大得多。使采集轨迹适应对象是有益的,有时是不可避免的。当前没有采用这种复杂方法。通常,操作员会根据自己的最佳知识放置对象。我们提出了一种基于可检测性指标的优化算法,该算法基于对象的CAD模型确定扫描轨迹。可检测性指数仅根据多个用户定义特征的模拟投影计算得出。通过调整功能,算法可以适应不同的成像任务。定性和定量评估了模拟和测量数据的性能。结果表明,与标准轨迹重建相比,我们的算法不仅可以更准确地检测特征,而且还可以提供具有较高总体质量的图像。通过引入优化算法来组成特定于对象的轨迹,这项工作可以减少投影的数量,从而减少扫描时间。

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