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Metal artifact reduction in dental CT images using polar mathematical morphology.

机译:使用极性数学形态学减少牙科CT图像中的金属伪影。

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摘要

Most dental implant planning systems use a 3D representation of the CT scan of the patient under study as it provides a more intuitive view of the human jaw. The presence of metallic objects in human jaws, such as amalgam or gold fillings, provokes several artifacts like streaking and beam hardening which makes the reconstruction process difficult. In order to reduce these artifacts, several methods have been proposed using the raw data, directly obtained from the tomographs, in different ways. However, in DICOM-based applications this information is not available, and thus the need of a new method that handles this task in the DICOM domain. The presented method performs a morphological filtering in the polar domain yielding output images less affected by artifacts (even in cases of multiple metallic objects) without causing significant smoothing of the anatomic structures, which allows a great improvement in the 3D reconstruction. The algorithm has been automated and compared to other image denoising methods with successful results.
机译:大多数牙科植入物计划系统使用3D表示正在研究的患者的CT扫描,因为它可以更直观地观察人的颌骨。人的颌骨中存在金属物体,例如汞合金或金填充物,会引起诸如条纹和束硬化的多种伪影,这使得重建过程变得困难。为了减少这些伪像,已经提出了几种以不同方式使用直接从断层扫描仪获得的原始数据的方法。但是,在基于DICOM的应用程序中,此信息不可用,因此需要在DICOM域中处理该任务的新方法。所提出的方法在极域中执行形态滤波,从而产生较少受伪影影响的输出图像(即使在多个金属物体的情况下),而不会引起解剖结构的显着平滑,从而极大地改善了3D重建。该算法已实现自动化,并与其他图像去噪方法进行了比较,并获得了成功的结果。

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