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联合型3D正电子发射断层显像/计算机断层扫描(PET/CT)扫描仪的衰减校正

Attenuation correction for a combined 3D PET/CT scanner.

作者信息

Kinahan P E, Townsend D W, Beyer T, Sashin D

机构信息

Department of Radiology, University of Pittsburgh, Pennsylvania 15213, USA.

出版信息

Med Phys. 1998 Oct;25(10):2046-53. doi: 10.1118/1.598392.

DOI:10.1118/1.598392
PMID:9800714
Abstract

In this work we demonstrate the proof of principle of CT-based attenuation correction of 3D positron emission tomography (PET) data by using scans of bone and soft tissue equivalent phantoms and scans of humans. This method of attenuation correction is intended for use in a single scanner that combines volume-imaging (3D) PET with x-ray computed tomography (CT) for the purpose of providing accurately registered anatomical localization of structures seen in the PET image. The goal of this work is to determine if we can perform attenuation correction of the PET emission data using accurately aligned CT attenuation information. We discuss possible methods of calculating the PET attenuation map at 511 keV based on CT transmission information acquired from 40 keV through 140 keV. Data were acquired on separate CT and PET scanners and were aligned using standard image registration procedures. Results are presented on three of the attenuation calculation methods: segmentation, scaling, and our proposed hybrid segmentation/scaling method. The results are compared with those using the standard 3D PET attenuation correction method as a gold standard. We demonstrate the efficacy of our proposed hybrid method for converting the CT attenuation map from an effective CT photon energy of 70 keV to the PET photon energy of 511 keV. We conclude that using CT information is a feasible way to obtain attenuation correction factors for 3D PET.

摘要

在这项工作中,我们通过使用骨和软组织等效体模扫描以及人体扫描,证明了基于CT的三维正电子发射断层扫描(PET)数据衰减校正的原理。这种衰减校正方法旨在用于将容积成像(3D)PET与X射线计算机断层扫描(CT)相结合的单一扫描仪,以便为PET图像中所见结构提供精确配准的解剖定位。这项工作的目标是确定我们是否可以使用精确对齐的CT衰减信息对PET发射数据进行衰减校正。我们讨论了基于从40keV到140keV获取的CT透射信息计算511keV处PET衰减图的可能方法。数据在单独的CT和PET扫描仪上采集,并使用标准图像配准程序进行对齐。给出了三种衰减计算方法的结果:分割法、缩放法以及我们提出的混合分割/缩放法。将结果与使用标准3D PET衰减校正方法作为金标准的结果进行比较。我们证明了我们提出的混合方法将CT衰减图从70keV的有效CT光子能量转换为511keV的PET光子能量的有效性。我们得出结论,使用CT信息是获得3D PET衰减校正因子的可行方法。

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