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A global method based on thin-plate splines for correction of geometric distortion: an application to fluoroscopic images.

机译:一种基于薄板样条的整体几何校正方法:在透视图像上的应用。

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摘要

Quantitative analysis of biomedical images needs a careful correction of geometric distortion. To avoid the discontinuities of the local correction techniques and achieve good accuracy in the presence of global and local distortion, a novel global correction technique based on thin-plate splines is proposed. The technique approximates the grid points by a thin plate minimizing the weighted sum of the bending energy and the mean squared residual errors. The method proposed is compared with three traditional correction techniques: two local and one global. One local technique is linear and takes into account translation, rotation, and scaling, the other is nonlinear and includes skewing. The global technique is based on a two-dimensional polynomial model. Computer-based simulations and experimental tests on fluoroscopic images were carried out. The local techniques were sensitive to both sigmoidal and radial distortion. The polynomial and thin-plate splines global techniques were found sensitive only to sigmoidal distortion and to radial distortion, respectively. The two global techniques showed better performances with respect to any local on synthetic and real images. Where the distortion is predominantly radial or high computational efficiency is required, the polynomial global correction technique should be preferred. Where the distortion has a local nature or is predominantly sigmoidal, the thin-plate splines global correction technique should be chosen.
机译:生物医学图像的定量分析需要仔细校正几何畸变。为了避免局部校正技术的不连续性,并在存在全局和局部畸变的情况下获得良好的精度,提出了一种基于薄板样条的新型全局校正技术。该技术通过使弯曲能量和均方差残留误差的加权和最小的薄板来近似网格点。所提出的方法与三种传统校正技术进行了比较:两种局部校正和一种整体校正。一种局部技术是线性的,并且考虑了平移,旋转和缩放,另一种是非线性的,并且包括偏斜。全局技术基于二维多项式模型。对荧光图像进行了基于计算机的模拟和实验测试。本地技术对S形和径向变形均敏感。发现多项式和薄板样条曲线整体技术分别仅对S形变形和径向变形敏感。相对于合成和真实图像上的任何局部图像,这两种全局技术均显示出更好的性能。在失真主要是径向的或需要高计算效率的情况下,应首选多项式全局校正技术。如果变形具有局部性质或主要呈S形,则应选择薄板样条整体校正技术。

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