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PET evaluation of the TSPO ligands F-18FEPPA, F-18PRB06, and F-18PBR111 in nonhuman primate., , , , , , , , , и 2 other автор(ы). NeuroImage, 52 (Supplement-1): S147 (2010)In vivo binding of antipsychotics to D3 and D2 receptors: A PET study in baboons with 11C-(+)-PHNO., , , , , , , , и . NeuroImage, 52 (Supplement-1): S99 (2010)PET imaging of dopamine D3 receptors in humans with 11C-(+)-PHNO: dissection of PHNO signal using two highly selective D3 antagonists., , , , , , , , , и 1 other автор(ы). NeuroImage, 52 (Supplement-1): S20-S21 (2010)Within-subject comparison of striatal D2 receptor occupancy measurements using 123IIBZM SPECT and 11CRaclopride PET., , , , , , , и . NeuroImage, 46 (2): 447-458 (2009)Within-subject comparison of the sensitivity of 11C-(+)-PHNO and 11Craclopride to amphetamine induced changes in endogenous dopamine in healthy human volunteers., , , , , , , , , и 2 other автор(ы). NeuroImage, 52 (Supplement-1): S42-S43 (2010)GAN Augmentation: Augmenting Training Data using Generative Adversarial Networks., , , , , , , , , и . CoRR, (2018)Spatial-temporal Pharmacokinetic Model Based Registration of 4D Brain PET Data., , , , , и . STIA, том 7570 из Lecture Notes in Computer Science, стр. 100-112. Springer, (2012)Modelling the progression of Alzheimer's disease in MRI using generative adversarial networks., , , и . Medical Imaging: Image Processing, том 10574 из SPIE Proceedings, стр. 105741K. SPIE, (2018)Imaging dopamine receptors in humans with 11C-(+)-PHNO: Dissection of D3 signal and anatomy., , , , , , , , и . NeuroImage, 54 (1): 264-277 (2011)A non-linear mixed effect modelling approach for metabolite correction of the arterial input function in PET studies., , , и . NeuroImage, (2013)