4.7 Article

Simultaneous MR-Compatible Emission and Transmission Imaging for PET Using Time-of-Flight Information

期刊

IEEE TRANSACTIONS ON MEDICAL IMAGING
卷 31, 期 9, 页码 1734-1742

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TMI.2012.2198831

关键词

Attenuation correction; positron emission tomography/magnetic resonance imaging (PET/MRI); time-of-flight (TOF); transmission scan

资金

  1. Institute for the Promotion of Innovation through Science and Technology in Flanders
  2. EU FP7 project SUBLIMA [241711]

向作者/读者索取更多资源

Quantitative positron emission tomography (PET) imaging relies on accurate attenuation correction. Predicting attenuation values from magnetic resonance (MR) images is difficult because MR signals are related to proton density and relaxation properties of tissues. Here, we propose a method to derive the attenuation map from a transmission scan. An annulus transmission source is positioned inside the field-of-view of the PET scanner. First a blank scan is acquired. The patient is injected with FDG and placed inside the scanner. 511-keV photons coming from the patient and the transmission source are acquired simultaneously. Time-of-flight information is used to extract the coincident photons originating from the annulus. The blank and transmission data are compared in an iterative reconstruction method to derive the attenuation map. Simulations with a digital phantom were performed to validate the method. The reconstructed attenuation coefficients differ less than 5% in volumes of interest inside the lungs, bone, and soft tissue. When applying attenuation correction in the reconstruction of the emission data a standardized uptake value error smaller than 9% was obtained for all tissues. In conclusion, our method can reconstruct the attenuation map and the emission data from a simultaneous scan without prior knowledge about the anatomy or the attenuation coefficients of the tissues.

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