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视力20/20:PET/MRI中磁共振成像引导的衰减校正:挑战、解决方案与机遇

Vision 20/20: Magnetic resonance imaging-guided attenuation correction in PET/MRI: Challenges, solutions, and opportunities.

作者信息

Mehranian Abolfazl, Arabi Hossein, Zaidi Habib

机构信息

Division of Nuclear Medicine and Molecular Imaging, Geneva University Hospital, Geneva CH-1211, Switzerland.

Division of Nuclear Medicine and Molecular Imaging, Geneva University Hospital, Geneva CH-1211, Switzerland; Geneva Neuroscience Centre, University of Geneva, Geneva CH-1205, Switzerland; and Department of Nuclear Medicine and Molecular Imaging, University of Groningen, Groningen 9700 RB, Netherlands.

出版信息

Med Phys. 2016 Mar;43(3):1130-55. doi: 10.1118/1.4941014.

Abstract

Attenuation correction is an essential component of the long chain of data correction techniques required to achieve the full potential of quantitative positron emission tomography (PET) imaging. The development of combined PET/magnetic resonance imaging (MRI) systems mandated the widespread interest in developing novel strategies for deriving accurate attenuation maps with the aim to improve the quantitative accuracy of these emerging hybrid imaging systems. The attenuation map in PET/MRI should ideally be derived from anatomical MR images; however, MRI intensities reflect proton density and relaxation time properties of biological tissues rather than their electron density and photon attenuation properties. Therefore, in contrast to PET/computed tomography, there is a lack of standardized global mapping between the intensities of MRI signal and linear attenuation coefficients at 511 keV. Moreover, in standard MRI sequences, bones and lung tissues do not produce measurable signals owing to their low proton density and short transverse relaxation times. MR images are also inevitably subject to artifacts that degrade their quality, thus compromising their applicability for the task of attenuation correction in PET/MRI. MRI-guided attenuation correction strategies can be classified in three broad categories: (i) segmentation-based approaches, (ii) atlas-registration and machine learning methods, and (iii) emission/transmission-based approaches. This paper summarizes past and current state-of-the-art developments and latest advances in PET/MRI attenuation correction. The advantages and drawbacks of each approach for addressing the challenges of MR-based attenuation correction are comprehensively described. The opportunities brought by both MRI and PET imaging modalities for deriving accurate attenuation maps and improving PET quantification will be elaborated. Future prospects and potential clinical applications of these techniques and their integration in commercial systems will also be discussed.

摘要

衰减校正是实现定量正电子发射断层扫描(PET)成像全部潜力所需的一系列数据校正技术中的重要组成部分。PET/磁共振成像(MRI)联合系统的发展促使人们广泛关注开发新策略以获取准确的衰减图,旨在提高这些新兴混合成像系统的定量准确性。PET/MRI中的衰减图理想情况下应从解剖学MR图像中得出;然而,MRI强度反映的是生物组织的质子密度和弛豫时间特性,而非其电子密度和光子衰减特性。因此,与PET/计算机断层扫描不同,在MRI信号强度与511keV处的线性衰减系数之间缺乏标准化的全局映射。此外,在标准MRI序列中,骨骼和肺组织由于其低质子密度和短横向弛豫时间而不会产生可测量的信号。MR图像也不可避免地会受到伪影的影响,从而降低其质量,进而影响其在PET/MRI衰减校正任务中的适用性。MRI引导的衰减校正策略可大致分为三大类:(i)基于分割的方法,(ii)图谱配准和机器学习方法,以及(iii)基于发射/透射的方法。本文总结了PET/MRI衰减校正的过去和当前的技术发展水平以及最新进展。全面描述了每种方法在应对基于MR的衰减校正挑战方面的优缺点。将详细阐述MRI和PET成像模态在获取准确衰减图和改善PET定量方面带来的机遇。还将讨论这些技术的未来前景和潜在临床应用以及它们在商业系统中的整合情况。

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