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High-degree polynomial models for CT simulation

机译:用于CT仿真的高级多项式模型

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The power and flexibility of polynomial surfaces are unleashed when their degrees are no longer restricted to four or lower, as they are used in early CT phantoms. They have proved useful and appropriate for geometric simulation of human and animal anatomy. In this paper a general algorithm is presented for the X-ray transform of any polynomial surface, as long as its ray-surface intersection equation is implemented on the computer. A versatile and powerful polynomial utility C++ class is created to simplify the implementation. Three groups of surfaces are implemented and applied to build a heart phantom closely simulating the Visible Man's heart. The X-ray transform algorithm is tested and verified by the successful reconstruction of the heart phantom.
机译:当它们的阶数不再被限制为4或更低时(如在早期CT体模中使用的那样),将释放多项式曲面的功能和灵活性。它们已被证明对人体和动物解剖学的几何模拟非常有用且适用。本文提出了一种针对任何多项式表面的X射线变换的通用算法,只要在计算机上实现了该模型的射线表面相交方程即可。创建了通用且功能强大的多项式实用程序C ++类来简化实现。实施并应用了三组曲面来构建心脏模型,以紧密模拟可见人的心脏。 X射线变换算法通过心脏模型的成功重建进行测试和验证。

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