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首页> 外文期刊>Journal of applied clinical medical physics / >Image intensifier distortion correction for fluoroscopic RSA: the need for independent accuracy assessment
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Image intensifier distortion correction for fluoroscopic RSA: the need for independent accuracy assessment

机译:荧光透视RSA的图像增强器畸变校正:需要独立的准确性评估

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Fluoroscopic images suffer from multiple modes of image distortion. Therefore, the purpose of this study was to compare the effects of correction using a range of two‐dimensional polynomials and a global approach. The primary measure of interest was the average error in the distances between four beads of an accuracy phantom, as measured using RSA. Secondary measures of interest were the root mean squared errors of the fit of the chosen polynomial to the grid of beads used for correction, and the errors in the corrected distances between the points of the grid in a second position. Based upon the two‐dimensional measures, a polynomial of order three in the axis of correction and two in the perpendicular axis was preferred. However, based upon the RSA reconstruction, a polynomial of order three in the axis of correction and one in the perpendicular axis was preferred. The use of a calibration frame for these three‐dimensional applications most likely tempers the effects of distortion. This study suggests that distortion correction should be validated for each of its applications with an independent “gold standard” phantom. PACS numbers: 87.59.C, 87.57.cp, 87.57.nf
机译:荧光镜图像遭受多种模式的图像失真。因此,本研究的目的是比较使用一系列二维多项式和整体方法进行校正的效果。感兴趣的主要度量是使用RSA测得的精确体模的四个小珠之间距离的平均误差。感兴趣的次级度量是所选多项式与用于校正的小珠网格的拟合的均方根误差,以及在第二位置的网格点之间的校正距离中的误差。基于二维量度,在校正轴上最好是三阶,在垂直轴上最好是二阶。然而,基于RSA重建,在校正轴上为三阶而在垂直轴上为一阶的多项式是优选的。在这些三维应用程序中使用校准框架很可能会减轻失真的影响。这项研究表明,应使用独立的“金标准”体模对其每种应用进行畸变校正验证。 PACS编号:87.59.C,87.57.cp,87.57.nf

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