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用于PET头部刚性运动校正的运动跟踪误差校正

Correction of motion tracking errors for PET head rigid motion correction.

作者信息

Miranda Alan, Kroll Tina, Schweda Vanessa, Staelens Steven, Verhaeghe Jeroen

机构信息

Molecular Imaging Center Antwerp, University of Antwerp, Universiteitsplein 1, B-2610 Antwerp, Belgium.

Forschungszentrum Jülich GmbH, Institute of Neuroscience and Medicine (INM-2), Wilhelm-Johnen-Strasse, Jülich, North Rhine-Westphalia D-52428, Germany.

出版信息

Phys Med Biol. 2023 Aug 14;68(17). doi: 10.1088/1361-6560/acec2c.

Abstract

. In positron emission tomography (PET) rigid motion correction, erroneous tracking information translates into reduced quality in motion corrected reconstructions. We aim to improve the accuracy of the motion tracking data, to improve the quality of motion corrected reconstructions.. We developed a method for correction of marker/skin displacement over the skull, for tracking methods which require multiple markers attached on the subject head. Additionally, we correct for small magnitude (∼1-2 mm) residual translation tracking errors that can still be present after other corrections. We performed [F]FDG scans in awake mice (= 8) and rats (= 8), and dynamic [F]SynVesT-1 scans in awake mice (= 8). Head tracking was performed with the point source tracking method, attaching 3-4 radioactive fiducial markers on the animals' heads. List-mode even-by-event motion correction reconstruction was performed using tracking data obtained from the point source tracking method (MC), tracking data corrected for marker displacement (MC-DC), and tracking data with additional correction for residual translation tracking errors (MC-DCT). Image contrast, and the image enhancement metric (IEM, with MC as reference) were calculated in these 3 reconstructions.. In mice [F]FDG scans, the contrast increased on average 3% from MC to MC-DC (IEM: 1.01), and 5% from MC to MC-DCT (IEM: 1.02). For mice [F]SynVesT-1 scans the contrast increased 6% from MC to MC-DC (IEM: 1.03), and 7% from MC to MC-DCT (IEM: 1.05). In rat [F]FDG scans contrast increased 5% (IEM: 1.04), and 9% (IEM: 1.05), respectively.. The methods presented here serve to correct motion tracking errors in PET brain scans, which translates into improved image quality in motion corrected reconstructions.

摘要

在正电子发射断层扫描(PET)刚性运动校正中,错误的跟踪信息会导致运动校正重建的质量下降。我们旨在提高运动跟踪数据的准确性,以改善运动校正重建的质量。我们开发了一种方法,用于校正颅骨上标记物/皮肤的位移,该方法适用于需要在受试者头部附着多个标记物的跟踪方法。此外,我们还校正了在其他校正后仍可能存在的小幅度(约1-2毫米)残余平移跟踪误差。我们对8只清醒小鼠和8只大鼠进行了[F]FDG扫描,并对8只清醒小鼠进行了动态[F]SynVesT-1扫描。使用点源跟踪方法进行头部跟踪,在动物头部附着3-4个放射性基准标记物。使用从点源跟踪方法获得的跟踪数据(MC)、校正了标记物位移的跟踪数据(MC-DC)以及对残余平移跟踪误差进行了额外校正的跟踪数据(MC-DCT)进行列表模式逐事件运动校正重建。在这三种重建中计算图像对比度和图像增强指标(IEM,以MC为参考)。在小鼠[F]FDG扫描中,从MC到MC-DC对比度平均增加3%(IEM:1.01),从MC到MC-DCT对比度增加5%(IEM:1.02)。对于小鼠[F]SynVesT-1扫描,从MC到MC-DC对比度增加6%(IEM:1.03),从MC到MC-DCT对比度增加7%(IEM:1.05)。在大鼠[F]FDG扫描中,对比度分别增加5%(IEM:1.04)和9%(IEM:1.05)。本文提出的方法用于校正PET脑扫描中的运动跟踪误差,这转化为运动校正重建中图像质量的提高。

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