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A radial adaptive filter for metal artifact reduction

机译:减少金属伪影的径向自适应滤波器

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摘要

High-density objects, such as metal prostheses or surgical clips, generate streak-like artifacts in CT images. We designed a radial adaptive filter, which directly operates on the corrupted reconstructed image, to effectively and efficiently reduce such artifacts. The filter adapts to the severity of local artifacts to preserve spatial resolution as much as possible. The widths and direction of the filter are derived from the local structure tensor. Visual inspection shows that this novel radial adaptive filter is superior with respect to existing methods in the case of mildly distorted images. In the presence of strong artifacts we propose a hybrid approach. An image, corrected with a standard method, which performs well on images with regions of severe artifacts, is fused with an adaptively filtered clone to combine the strengths of both methods.
机译:高密度物体(例如金属假体或手术夹)会在CT图像中产生条纹​​状的伪像。我们设计了一个径向自适应滤波器,该滤波器可直接对损坏的重建图像进行操作,以有效地减少此类伪像。过滤器适应局部伪像的严重性,以尽可能保留空间分辨率。滤波器的宽度和方向是从局部结构张量导出的。目视检查表明,在图像轻微失真的情况下,这种新颖的径向自适应滤波器优于现有方法。在存在强烈伪影的情况下,我们提出了一种混合方法。将经过标准方法校正的图像在带有严重伪影区域的图像上表现良好,然后将其与自适应过滤的克隆融合,以结合两种方法的优势。

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