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Publications by Luc Van Nueten
18f-JNJ-64413739, a Novel PET Ligand for the P2X7 Ion Channel: Radiation Dosimetry, Kinetic Modeling, Test-Retest Variability and Occupancy of the P2X7 Antagonist JNJ-54175446
Journal of Nuclear Medicine
Medicine
Nuclear Medicine
Radiology
Imaging
Neuroendocrine and Inflammatory Effects of Childhood Trauma Following Psychosocial and Inflammatory Stress in Women With Remitted Major Depressive Disorder
Brain Sciences
Neuroscience
Related publications
PET Imaging of the P2X7 Ion Channel With a Novel Tracer [18f]jnj-64413739 in a Rat Model of Neuroinflammation
Molecular Imaging and Biology
Cancer Research
Nuclear Medicine
Radiology
Imaging
Oncology
Preclinical Evaluation and Non-Human Primate Receptor Occupancy Study of 18f-JNJ-64413739, a Novel PET Radioligand for P2X7 Receptors
Journal of Nuclear Medicine
Medicine
Nuclear Medicine
Radiology
Imaging
Pharmacology of a Novel Central Nervous System-Penetrant P2X7 Antagonist JNJ-42253432
Journal of Pharmacology and Experimental Therapeutics
Molecular Medicine
Pharmacology
PET Imaging of Beta-Secretase 1 in the Human Brain: Radiation Dosimetry, Quantification, and Test-Retest Examination of [18f]pf-06684511
European Journal of Nuclear Medicine and Molecular Imaging
Medicine
Nuclear Medicine
Radiology
Imaging
P2X7 Radioligand 18f-PTTP for the Differentiation of Lung Tumor and Inflammation
Journal of Nuclear Medicine
Medicine
Nuclear Medicine
Radiology
Imaging
Effects of Rigid and Non-Rigid Image Registration on Test-Retest Variability of Quantitative [18F]FDG PET/CT Studies
EJNMMI Research
Nuclear Medicine
Radiology
Imaging
Antistaphylococcal Activities of the New Fluoroquinolone JNJ-Q2
Antimicrobial Agents and Chemotherapy
Infectious Diseases
Pharmacology
P2X7 Is a Scavenger Receptor for Apoptotic Cells in the Absence of Its Ligand, Extracellular ATP
Journal of Immunology
Allergy
Immunology
Kinetic Modeling and Graphical Analysis of 18f-Fluoromethylcholine (FCho), 18f-Fluoroethyltyrosine (FET) and 18f-Fluorodeoxyglucose (FDG) PET for the Fiscrimination Between High-Grade Glioma and Radiation Necrosis in Rats
PLoS ONE
Multidisciplinary