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首页> 外文期刊>Physics in medicine and biology. >Motion-compensated iterative cone-beam CT image reconstruction with adapted blobs as basis functions.
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Motion-compensated iterative cone-beam CT image reconstruction with adapted blobs as basis functions.

机译:运动补偿的迭代锥束CT图像重建,具有自适应的斑点作为基础函数。

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摘要

This paper presents a three-dimensional method to reconstruct moving objects from cone-beam X-ray projections using an iterative reconstruction algorithm and a given motion vector field. For the image representation, adapted blobs are used, which can be implemented efficiently as basis functions. Iterative reconstruction requires the calculation of line integrals (forward projections) through the image volume, which are compared with the actual measurements to update the image volume. In the existence of a divergent motion vector field, a change in the volumes of the blobs has to be taken into account in the forward and backprojections. An efficient method to calculate the line integral through the adapted blobs is proposed. It solves the problem, how to compensate for the divergence in the motion vector field on a grid of basis functions. The method is evaluated on two phantoms, which are subject to three different known motions. Moreover, a motion-compensated filtered back-projection reconstruction method is used, and the reconstructed images are compared. Using the correct motion vector field with the iterative motion-compensated reconstruction, sharp images are obtained, with a quality that is significantly better than gated reconstructions.
机译:本文提出了一种三维方法,使用迭代重建算法和给定的运动矢量场,从锥束X射线投影中重建运动对象。对于图像表示,使用自适应的斑点,这些斑点可以有效地实现为基本功能。迭代重建需要计算通过图像体积的线积分(前向投影),并将其与实际测量值进行比较以更新图像体积。在存在发散运动矢量场的情况下,在正向投影和反向投影中必须考虑斑点大小的变化。提出了一种通过自适应斑点计算线积分的有效方法。它解决了如何在基函数网格上补偿运动矢量场中的发散的问题。该方法在两个模型上进行评估,两个模型分别经历三种不同的已知运动。此外,使用了运动补偿滤波反投影重建方法,并对重建的图像进行了比较。使用正确的运动矢量场进行迭代运动补偿的重建,可以获得清晰的图像,其质量明显优于门控重建。

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