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Magnetic resonance-based motion correction for positron emission tomography imaging

机译:用于正电子发射断层扫描成像的基于磁共振的运动校正

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摘要

Positron emission tomography (PET) image quality is limited by patient motion. Emission data are blurred owing to cardiac and/or respiratory motion. Although spatial resolution is 4 mm for standard clinical whole-body PET scanners, the effective resolution can be as low as 1 cm owing to motion. Additionally, the deformation of attenuation medium causes image artifacts. Previously, gating has been used to "freeze" the motion, but led to significantly increased noise level. Simultaneous PET/magnetic resonance (MR) modality offers a new way to perform PET motion correction. MR can be used to measure 3-dimensional motion fields, which can then be incorporated into the iterative PET reconstruction to obtain motion-corrected PET images. In this report, we present MR imaging techniques to acquire dynamic images, a nonrigid image registration algorithm to extract motion fields from acquired MR images, and a PET reconstruction algorithm with motion correction. We also present results from both phantom and in vivo animal PET/MR studies. We demonstrate that MR-based PET motion correction using simultaneous PET/MR improves image quality and lesion detectability compared with gating and no motion correction. ? 2013 Elsevier Inc.
机译:正电子发射断层扫描(PET)的图像质量受到患者运动的限制。由于心脏和/或呼吸运动,排放数据变得模糊。尽管标准临床全身PET扫描仪的空间分辨率为4毫米,但由于运动,有效分辨率可能低至1厘米。另外,衰减介质的变形会导致图像伪影。以前,门控已用于“冻结”运动,但导致噪声水平显着提高。同时进行的PET /磁共振(MR)方式提供了执行PET运动校正的新方法。 MR可用于测量3维运动场,然后可将其合并到迭代PET重建中以获得运动校正的PET图像。在本报告中,我们介绍了用于获取动态图像的MR成像技术,一种用于从获取的MR图像中提取运动场的非刚性图像配准算法以及一种具有运动校正的PET重建算法。我们还介绍了幻影和体内动物PET / MR研究的结果。我们证明与门控和无运动校正相比,同时使用PET / MR的基于MR的PET运动校正可改善图像质量和病变检测能力。 ? 2013爱思唯尔公司

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