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首页> 外文期刊>Bio-medical materials and engineering >A non-rigid registration method for cerebral DSA images based on forward and inverse stretching-avoiding bilinear interpolation
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A non-rigid registration method for cerebral DSA images based on forward and inverse stretching-avoiding bilinear interpolation

机译:基于正反拉伸避免双线性插值的脑DSA图像非刚性配准方法

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摘要

In order to reduce the motion artifact caused by the patient in cerebral DSA images, a non-rigid registration method based on stretching transformation is presented in this paper. Unlike other traditional methods, it does not need bilinear interpolation which is rather time-consuming and even produce 'originally non-existent gray value'. By this method, the mask image is rasterized to generate appropriate control points. The Energy of Histogram of Differences criterion is adopted as similarity measurement, and the Powell algorithm is utilized for acceleration. A forward stretching transformation is used to complete motion estimation and an inverse stretching transformation to generate target image by pixel mapping strategy. This method is effective to maintain the topological relationships of the gray value before and after the image deformation. The mask image remains clear and accurate contours, and the quality of the subtraction image after the registration is favorable. This method can provide support for clinical treatment and diagnosis of cerebral disease.
机译:为了减少患者在脑DSA图像中引起的运动伪影,提出了一种基于拉伸变换的非刚性配准方法。与其他传统方法不同,它不需要费时甚至可以产生“最初不存在的灰度值”的双线性插值。通过这种方法,对掩模图像进行栅格化以生成适当的控制点。差异直方图的能量准则被用作相似性度量,并且鲍威尔算法被用于加速。前向拉伸变换用于完成运动估计,逆向拉伸变换用于通过像素映射策略生成目标图像。该方法有效地保持了图像变形前后的灰度值的拓扑关系。掩模图像保持清晰,准确的轮廓,配准后的减法图像质量良好。该方法可为脑疾病的临床治疗和诊断提供支持。

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