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Kinetics and 28-day test–retest repeatability and reproducibility of [ 11 C]UCB-J PET brain imaging.

Authors :
Tuncel, Hayel
Boellaard, Ronald
Coomans, Emma M
de Vries, Erik FJ
Glaudemans, Andor WJM
Feltes, Paula Kopschina
García, David V
Verfaillie, Sander CJ
Wolters, Emma E
Sweeney, Steven P
Ryan, J Michael
Ivarsson, Magnus
Lynch, Berkley A
Schober, Patrick
Scheltens, Philip
Schuit, Robert C
Windhorst, Albert D
De Deyn, Peter P
van Berckel, Bart NM
Golla, Sandeep SV
Source :
Journal of Cerebral Blood Flow & Metabolism. Jun2021, Vol. 41 Issue 6, p1338-1350. 13p.
Publication Year :
2021

Abstract

[11C]UCB-J is a novel radioligand that binds to synaptic vesicle glycoprotein 2A (SV2A). The main objective of this study was to determine the 28-day test–retest repeatability (TRT) of quantitative [11C]UCB-J brain positron emission tomography (PET) imaging in Alzheimer's disease (AD) patients and healthy controls (HCs). Nine HCs and eight AD patients underwent two 60 min dynamic [11C]UCB-J PET scans with arterial sampling with an interval of 28 days. The optimal tracer kinetic model was assessed using the Akaike criteria (AIC). Micro-/macro-parameters such as tracer delivery (K1) and volume of distribution (VT) were estimated using the optimal model. Data were also analysed for simplified reference tissue model (SRTM) with centrum semi-ovale (white matter) as reference region. Based on AIC, both 1T2k_VB and 2T4k_VB described the [11C]UCB-J kinetics equally well. Analysis showed that whole-brain grey matter TRT for VT, DVR and SRTM BPND were –2.2% ± 8.5, 0.4% ± 12.0 and –8.0% ± 10.2, averaged over all subjects. [11C]UCB-J kinetics can be well described by a 1T2k_VB model, and a 60 min scan duration was sufficient to obtain reliable estimates for both plasma input and reference tissue models. TRT for VT, DVR and BPND was <15% (1SD) averaged over all subjects and indicates adequate quantitative repeatability of [11C]UCB-J PET. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0271678X
Volume :
41
Issue :
6
Database :
Academic Search Index
Journal :
Journal of Cerebral Blood Flow & Metabolism
Publication Type :
Academic Journal
Accession number :
150426990
Full Text :
https://doi.org/10.1177/0271678X20964248