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Bartlett, Elizabeth A.; Ananth, Mala; Rossano, Samantha; Zhang, Mengru; Yang, Jie; Lin, Shu-fei; Nabulsi, Nabeel; Huang, Yiyun; Zanderigo, Francesca; Parsey, Ramin V.; DeLorenzo, Christine, E-mail: Elizabeth.Bartlett@stonybrook.edu2019
AbstractAbstract
[en]
Purpose
To determine if one venous blood sample can substitute full arterial sampling in quantitative modeling for multiple positron emission tomography (PET) radiotracers using simultaneous estimation of the input function (SIME).Procedures
Participants underwent PET imaging with [11C]ABP688, [11C]CUMI-101, and [11C]DASB. Full arterial sampling and additional venous blood draws were performed for quantification with the arterial input function (AIF) and SIME using one arterial or venous (vSIME) sample.Results
Venous and arterial metabolite-corrected plasma activities were within 6 % of each other at varying time points. vSIME- and AIF-derived outcome measures were in good agreement, with optimal sampling times of 12 min ([11C]ABP688), 90 min ([11C]CUMI-101), and 100 min ([11C]DASB). Simulation-based power analyses revealed that SIME required fewer subjects than the AIF method to achieve statistical power, with significant reductions for [11C]CUMI-101 and [11C]DASB with vSIME. Replication of previous findings and test-retest analyses bolstered the simulation analyses.Conclusions
We demonstrate the feasibility of AIF recovery using SIME with one venous sample for [11C]ABP688, [11C]CUMI-101, and [11C]DASB. This method simplifies PET acquisition while allowing for fully quantitative modeling, although some variability and bias are present with respect to AIF-based quantification, which may depend on the accuracy of the single venous blood measurement.Primary Subject
Source
Copyright (c) 2019 World Molecular Imaging Society; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Molecular Imaging and Biology (Print); ISSN 1536-1632; ; v. 21(5); p. 926-934
Country of publication
BETA DECAY RADIOISOTOPES, BETA-PLUS DECAY RADIOISOTOPES, BIOLOGICAL MATERIALS, BODY FLUIDS, CARBON ISOTOPES, COMPUTERIZED TOMOGRAPHY, DIAGNOSTIC TECHNIQUES, EMISSION COMPUTED TOMOGRAPHY, EVEN-ODD NUCLEI, ISOTOPE APPLICATIONS, ISOTOPES, LIGHT NUCLEI, MATERIALS, MINUTES LIVING RADIOISOTOPES, NUCLEI, RADIOISOTOPES, SIMULATION, TESTING, TOMOGRAPHY
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