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Comparison of cerebral blood flow acquired by simultaneous [15O]water positron emission tomography and arterial spin labeling magnetic resonance imagingThe use of dynamic O-(2-18F-fluoroethyl)-l-tyrosine PET in the diagnosis of patients with progressive and recurrent glioma.Imaging of amino acid transport in brain tumours: Positron emission tomography with O-(2-[(18)F]fluoroethyl)-L-tyrosine (FET).Dietary tryptophan depletion in humans using a simplified two amino acid formula - a pilot study.Spatial Relationship of Glioma Volume Derived from FET PET and Volumetric MRSI: a hybrid PET-MRI study.O-(2-[18F]fluoroethyl)-L-tyrosine PET in gliomas: influence of data processing in different centres.Amino acid PET and MR perfusion imaging in brain tumours.Influence of blood-brain barrier permeability on O-(2-18F-fluoroethyl)-L-tyrosine uptake in rat gliomas.Volumetric assessment of recurrent or progressive gliomas: comparison between F-DOPA PET and perfusion-weighted MRI.Congruency of tumour volume delineated by FET PET and MRSI.Automatic derivation of an MR-PET image-based input function for quantification of 18F-FET.Radiation injury vs. recurrent brain metastasis: combining textural feature radiomics analysis and standard parameters may increase 18F-FET PET accuracy without dynamic scans.Reproducibility of O-(2-(18)F-fluoroethyl)-L-tyrosine uptake kinetics in brain tumors and influence of corticoid therapy: an experimental study in rat gliomas.Dual-time-point O-(2-[(18)F]fluoroethyl)-L-tyrosine PET for grading of cerebral gliomas.Adapting MR-BrainPET scans for comparison with conventional PET: experiences with dynamic FET-PET in brain tumours.Comparison of 18F-FET PET and perfusion-weighted MR imaging: a PET/MR imaging hybrid study in patients with brain tumors.Multimodal imaging utilising integrated MR-PET for human brain tumour assessment.Comparison of 18F-FET PET and perfusion-weighted MRI for glioma grading: a hybrid PET/MR study.Comment on Hatzoglou et al: Dynamic contrast-enhanced MRI perfusion versus 18FDG PET/CT in differentiating brain tumor progression from radiation injury.Dynamic O-(2-18F-fluoroethyl)-L-tyrosine positron emission tomography differentiates brain metastasis recurrence from radiation injury after radiotherapy.Relationship of regional cerebral blood flow and kinetic behaviour of O-(2-(18)F-fluoroethyl)-L-tyrosine uptake in cerebral gliomas.
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description
researcher ORCID ID = 0000-0002-9927-6335
@en
wetenschapper
@nl
name
Christian P Filss
@ast
Christian P Filss
@en
Christian P Filss
@nl
type
label
Christian P Filss
@ast
Christian P Filss
@en
Christian P Filss
@nl
prefLabel
Christian P Filss
@ast
Christian P Filss
@en
Christian P Filss
@nl
P106
P31
P496
0000-0002-9927-6335