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Weitere Publikationen von Autoren mit dem selben Namen

18FJNJ41510417 a potential PET radioligand for imaging phosphodiesterase-10A in the brain., , , , , , , , , und 4 andere Autor(en). NeuroImage, 52 (Supplement-1): S15 (2010)Estimation of Crystal Timing Properties and Efficiencies for the Improvement of (Joint) Maximum-Likelihood Reconstructions in TOF-PET., , , und . IEEE Trans. Med. Imaging, 39 (4): 952-963 (2020)Age-related GABAergic differences in the primary sensorimotor cortex: A multimodal approach combining PET, MRS and TMS., , , , , , , , und . NeuroImage, (2021)Subject classification from 18Fflutemetamol data into categories of raised or low levels of beta-amyloid: Concordance between quantitative and visual assessment., , , , , , , , , und . NeuroImage, 52 (Supplement-1): S144 (2010)Voxel-based comparison of state-of-the-art reconstruction algorithms for 18F-FDG PET brain imaging using simulated and clinical data., , , , , und . NeuroImage, (2014)In vivo measurement of dopamine release with 18FFallypride in healthy humans during a reward task and optimization of task timing., , , , und . NeuroImage, 52 (Supplement-1): S163 (2010)Synaptic density in healthy human aging is not influenced by age or sex: a 11C-UCB-J PET study., , , , , , , , und . NeuroImage, (2021)Binary classification of 18F-flutemetamol PET using machine learning: Comparison with visual reads and structural MRI., , , , , , , , , und 1 andere Autor(en). NeuroImage, (2013)In vivo PET of synaptic density as potential diagnostic marker for cognitive disorders: prospective comparison with current imaging markers for neuronal dysfunction and relation to symptomatology - study protocol., , , , und . BMC Medical Imaging, 24 (1): 41 (Dezember 2024)Motor- and food-related metabolic cerebral changes in the activity-based rat model for anorexia nervosa: A voxel-based microPET study., , , , , und . NeuroImage, 35 (1): 214-221 (2007)