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Metal artifact reduction strategies for improved attenuation correction in hybrid PET/CT imaging

机译:金属伪影减少策略可改善混合PET / CT成像中的衰减校正

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摘要

Metallic implants are known to generate bright and dark streaking artifacts in x-ray computed tomography (CT) images, which in turn propagate to corresponding functional positron emission tomography (PET) images during the CT-based attenuation correction procedure commonly used on hybrid clinical PET/CT scanners. Therefore, visual artifacts and overestimation and/or underestimation of the tracer uptake in regions adjacent to metallic implants are likely to occur and as such, inaccurate quantification of the tracer uptake and potential erroneous clinical interpretation of PET images is expected. Accurate quantification of PET data requires metal artifact reduction (MAR) of the CT images prior to the application of the CT-based attenuation correction procedure. In this review, the origins of metallic artifacts and their impact on clinical PET/CT imaging are discussed. Moreover, a brief overview of proposed MAR methods and their advantages and drawbacks is presented. Although most of the presented MAR methods are mainly developed for diagnostic CT imaging, their potential application in PET/CT imaging is highlighted. The challenges associated with comparative evaluation of these methods in a clinical environment in the absence of a gold standard are also discussed.
机译:众所周知,金属植入物会在X射线计算机断层扫描(CT)图像中产生明暗条纹痕迹,然后在混合型临床PET常用的基于CT的衰减校正过程中,将其传播到相应的功能正电子发射断层扫描(PET)图像。 / CT扫描仪。因此,在与金属植入物相邻的区域中可能发生视觉伪影以及对示踪剂摄取的高估和/或低估,因此,预期对示踪剂摄取的量化不准确以及PET图像的潜在错误临床解释。 PET数据的准确定量需要在应用基于CT的衰减校正程序之前减少CT图像的金属伪影(MAR)。在这篇综述中,讨论了金属伪影的起源及其对临床PET / CT成像的影响。此外,简要介绍了提出的MAR方法及其优缺点。尽管目前提出的大多数MAR方法主要是为诊断CT成像开发的,但突出了它们在PET / CT成像中的潜在应用。还讨论了在缺乏金标准的临床环境中与这些方法进行比较评估相关的挑战。

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