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Orthopaedic and non-orthopaedic applications of a single-energy iterative metal artefact reduction technique and other metal artefact reduction techniques explained

机译:解释了单能量迭代金属人工制品减少技术和其他金属人工制品减少技术的矫形和非骨科应用

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摘要

Metal within the CT field of view causes artefact that degrades the diagnostic quality of the processed images. This is related to the high atomic number of most metals and is due to a combination of beam hardening, scatter, edge effects and photon starvation. Both software and hardware metal artefact reduction (MAR) techniques have been developed. Iterative reconstruction software MAR techniques can be applied on raw CT data sets and show improved image quality in the setting of sparse projection data when compared with filtered back-projection methods. Recently, a novel single-energy iterative metal artefact reduction technique (IMART) was released for use with large orthopaedic devices. The aim of this pictorial essay was to demonstrate the usefulness of IMART in the setting of both orthopaedic and non-orthopaedic metallic objects and devices.
机译:CT视场内的金属会造成伪影,从而降低处理后图像的诊断质量。这与大多数金属的高原子序数有关,并且归因于束硬化,散射,边缘效应和光子饥饿。已经开发了软件和硬件金属伪像减少(MAR)技术。迭代重建软件MAR技术可以应用于原始CT数据集,并且与滤波反投影方法相比,在稀疏投影数据的设置中显示出改进的图像质量。最近,发布了一种新颖的单能量迭代金属人工制品减少技术(IMART),可用于大型骨科器械。该图形文章的目的是证明IMART在矫形和非矫形金属物体和设备设置中的有用性。

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