Literature DB >> 23435214

Validation of parametric methods for [¹¹C]PE2I positron emission tomography.

My Jonasson1, Lieuwe Appel, Jonas Engman, Andreas Frick, Dag Nyholm, Håkan Askmark, Torsten Danfors, Jens Sörensen, Tomas Furmark, Mark Lubberink.   

Abstract

OBJECTIVES: The radioligand [(11)C]PE2I is highly selective for dopamine transporter (DAT) and can be used in vivo for investigation of changes in DAT concentration, progression of disease and validation of treatment using positron emission tomography (PET). DAT is an important protein for regulation of central dopamine concentration and DAT deficiency has been associated with several neurodegenerative and neuropsychiatric disorders. Accurate parametric images are a prerequisite for clinical application of [(11)C]PE2I. The purpose of this study was to evaluate different methods for producing [(11)C]PE2I parametric images, showing binding potential (BPND) and relative delivery (R1) at the voxel level, using clinical data as well as simulations.
METHODS: Investigations were made in twelve subjects either with social anxiety disorder (n=6) or parkinsonian syndrome (n=6), each receiving an 80 min dynamic PET scan. All subjects underwent a T1-weighted MRI scan which was co-registered to the PET images and used for definition of regions of interest using a probabilistic template (PVElab). Two basis function implementations (receptor parametric mapping: RPM, RPM2) of the simplified reference tissue model (SRTM) and three multilinear reference tissue models (MRTMo, MRTM and MRTM2) were used for computation of parametric BPND and R1 images. In addition, reference Logan and standard uptake value ratio (SUVr) were investigated. Evaluations of BPND and R1 images were performed using linear regression to compare the parametric methods to region-based analyses with SRTM and cerebellar gray matter as reference region. Accuracy and precision of each method were assessed by simulations.
RESULTS: Correlation and slope of linear regression between parametric and region-based BPND and R1 values in both striatum and extra-striatal regions were optimal for RPM (R(2)=0.99 for both BPND and R1; slopes 0.99 and 0.98 for BPND and R1, respectively, in striatum). In addition, accuracy and precision were best for RPM and RPM2.
CONCLUSION: The basis function methods provided more robust estimations of the parameters compared to the other models and performed best in simulations. RPM, a basis function implementation of SRTM, is the preferred method for voxel level analysis of [(11)C]PE2I PET studies.
Copyright © 2013 Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 23435214     DOI: 10.1016/j.neuroimage.2013.02.022

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  5 in total

1.  Simplified estimation of binding parameters based on image-derived reference tissue models for dopamine transporter bindings in non-human primates using [18F]FE-PE2I and PET.

Authors:  Ikuo Odano; Andrea Varrone; Tetsuo Hosoya; Kazuya Sakaguchi; Balázs Gulyás; Parasuraman Padmanabhan; Krishna Kanta Ghosh; Chang-Tong Yang; Ilonka Guenther; Zhimin Wang; Raymond Serrano; Nevil Ghislain Chimon; Christer Halldin
Journal:  Am J Nucl Med Mol Imaging       Date:  2017-12-20

2.  Development of a clinically feasible [11C]PE2I PET method for differential diagnosis of parkinsonism using reduced scan duration and automated reference region extraction.

Authors:  My Jonasson; Lieuwe Appel; Torsten Danfors; Dag Nyholm; Håkan Askmark; Andreas Frick; Jonas Engman; Tomas Furmark; Jens Sörensen; Mark Lubberink
Journal:  Am J Nucl Med Mol Imaging       Date:  2017-12-20

3.  NRM 2021 Abstract Booklet.

Authors: 
Journal:  J Cereb Blood Flow Metab       Date:  2021-12       Impact factor: 6.960

4.  Accuracy and precision of zero-echo-time, single- and multi-atlas attenuation correction for dynamic [11C]PE2I PET-MR brain imaging.

Authors:  João M Sousa; Lieuwe Appel; Inés Merida; Rolf A Heckemann; Nicolas Costes; Mathias Engström; Stergios Papadimitriou; Dag Nyholm; Håkan Ahlström; Alexander Hammers; Mark Lubberink
Journal:  EJNMMI Phys       Date:  2020-12-28

5.  Evaluation of zero-echo-time attenuation correction for integrated PET/MR brain imaging-comparison to head atlas and 68Ge-transmission-based attenuation correction.

Authors:  João M Sousa; Lieuwe Appel; Mathias Engström; Stergios Papadimitriou; Dag Nyholm; Elna-Marie Larsson; Håkan Ahlström; Mark Lubberink
Journal:  EJNMMI Phys       Date:  2018-10-22
  5 in total

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