首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Reduction of artefacts caused by hip implants in CT-based attenuation-corrected PET images using 2-D interpolation of a virtual sinogram on an irregular grid.
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Reduction of artefacts caused by hip implants in CT-based attenuation-corrected PET images using 2-D interpolation of a virtual sinogram on an irregular grid.

机译:使用不规则网格上的虚拟正弦图的二维插值,减少基于CT的经衰减校正的PET图像中的髋部植入物造成的假象。

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PURPOSE: Metallic prosthetic replacements, such as hip or knee implants, are known to cause strong streaking artefacts in CT images. These artefacts likely induce over- or underestimation of the activity concentration near the metallic implants when applying CT-based attenuation correction of positron emission tomography (PET) images. Since this degrades the diagnostic quality of the images, metal artefact reduction (MAR) prior to attenuation correction is required. METHODS: The proposed MAR method, referred to as virtual sinogram-based technique, replaces the projection bins of the sinogram that are influenced by metallic implants by a 2-D Clough-Tocher cubic interpolation scheme performed in an irregular grid, called Delaunay triangulated grid. To assess the performance of the proposed method, a physical phantom and 30 clinical PET/CT studies including hip prostheses were used. The results were compared to the method implemented on the Siemens Biograph mCT PET/CT scanner. RESULTS: Both phantom and clinical studies revealed that the proposed method performs equally well as the Siemens MAR method in the regions corresponding to bright streaking artefacts and the artefact-free regions. However, in regions corresponding to dark streaking artefacts, the Siemens method does not seem to appropriately correct the tracer uptake while the proposed method consistently increased the uptake in the underestimated regions, thus bringing it to the expected level. This observation is corroborated by the experimental phantom study which demonstrates that the proposed method approaches the true activity concentration more closely. CONCLUSION: The proposed MAR method allows more accurate CT-based attenuation correction of PET images and prevents misinterpretation of tracer uptake, which might be biased owing to the propagation of bright and dark streaking artefacts from CT images to the PET data following the attenuation correction procedure.
机译:目的:已知金属假体替代物,例如髋关节或膝关节植入物,会在CT图像中引起强烈的条纹假象。当应用基于CT的正电子发射断层扫描(PET)图像的衰减校正时,这些伪影可能会导致金属植入物附近的活动浓度过高或过低。由于这会降低图像的诊断质量,因此需要进行衰减校正之前的金属伪像减少(MAR)。方法:提出的MAR方法,称为基于虚拟正弦图的技术,通过在不规则网格(称为Delaunay三角网格)中执行的二维Clough-Tocher三次插值方案来替换受金属植入物影响的正弦图的投影箱。 。为了评估所提出方法的性能,使用了人体模型和包括髋关节假体在内的30项临床PET / CT研究。将结果与在西门子Biograph mCT PET / CT扫描仪上实施的方法进行比较。结果:幻像和临床研究均表明,所提出的方法在对应于亮条纹伪影和无伪影的区域中的性能与Siemens MAR方法相当。但是,在与暗纹伪影相对应的区域中,Siemens方法似乎无法适当地校正示踪剂的吸收,而所提出的方法始终会增加被低估区域的吸收,从而使其达到预期水平。实验体模研究证实了这一观察结果,该幻象研究表明所提出的方法更接近真实活性浓度。结论:提出的MAR方法可以对PET图像进行更精确的基于CT的衰减校正,并防止对示踪剂摄取的误解,这可能是由于在衰减校正程序后,从CT图像到PET数据的明暗斑纹伪影的传播所致。 。

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