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A Comparative Study on Interpolation Methods in Rebinning Circular Fan-Beam Data into Parallel-Beam Data

机译:将循环扇形束数据中的插值方法与并联梁数据的相比研究

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Computed Tomography (CT) scanners evolved from simple parallel-beam geometry into more complex fan-beam geometry. The rebinning mechanism to convert fan-beam projections to parallel-beam projections is one of the methods simplifying the reconstruction of the CT image. Various interpolation methods result in different numerical presentations and noisy textures in the reconstructed CT images. This paper evaluates three interpolation methods, linear, frequency domain and higher order in rebinning fan-beam data into parallel-beam data in the framework of the FBP algorithm in parallel-beam CTs. The high-contrast spatial resolution, modulation transfer function (MTF), and noise are used to quantify the image quality. The noise is expressed as the noise power spectrum (NPS) and noise variance of the reconstructed image containing only Poisson distributed noise. Our results show that the higher order interpolation, cubic-spline, is the most helpful to improve the image quality in rebinning. We further demonstrate that the rebinning data gives more satisfactory results for assessment of noise variance in comparison with the fan-beam data.
机译:计算机断层扫描(CT)扫描仪从简单的并联梁几何形式演变为更复杂的风扇束几何。将扇形射线投影转换为并联光束投影的重构机制是简化CT图像重建的方法之一。各种插值方法导致重建的CT图像中的不同数值呈现和嘈杂的纹理。本文评估了三个插值方法,线性,频域和更高阶,在并行光束CTS中的FBP算法框架中的并行波束数据中。高对比度空间分辨率,调制传递函数(MTF)和噪声用于量化图像质量。噪声表示为仅包含泊松分布式噪声的重建图像的噪声功率谱(NPS)和噪声方差。我们的研究结果表明,高阶插值,立方样条,最有助于提高叛备中的图像质量。我们进一步证明,与扇形光束数据相比,重构数据提供了更令人满意的评估噪声方差的结果。

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