BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HGG) to assess tumor metabolic activity via positron emission tomography (PET). We aim to investigate its value for target volume definition, as a prognosticator, and associations with whole-blood transcriptome liquid biopsy (WBT lbx) for which we recently reported feasibility to mirror tumor characteristics and response to particle irradiation in recurrent HGG (rHGG).Methods18F-FET-PET data from n = 43 patients with primary glioblastoma (pGBM) and n = 33 patients with rHGG were assessed. pGBM patients were irradiated with photons and sequential proton/carbon boost, and rHGG patients were treated with carbon re-irradiation (CIR). WBT (Illumina ...
Background: Reprogrammed cellular metabolism is a cancer hallmark. In addition to increased glycolys...
In glioma patients, differentiation between tumor progression (TP) and treatment-related changes (TR...
Purpose PET using radiolabeled amino acid [F-18]-fluoro-ethyl-(L)-tyrosine (FET-PET) is a well-estab...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
Background: Selective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
Selective uptake of (18)F-fluoro-ethyl-tyrosine ($^{18}$F-FET) is used in high-grade glioma (HGG) to...
The PET tracer O-(2-[18F]Fluoroethyl)-l-tyrosine (FET) has been shown to be valuable for different r...
OBJECTIVE The aim of this prospective longitudinal study was to identify static and dynamic O-(2-[(...
Item does not contain fulltext3'-deoxy-3'-(18)F-fluorothymidine ((18)F-FLT) is a radiopharmaceutical...
BackgroundO-(2-18 F-fluoroethyl)-L-tyrosine-(FET)-PET may be helpful to improve the definition of ra...
The standard therapy strategy for high-grade glioma (HGG) is based on the maximal surgery followed b...
BackgroundPET represents a valuable tool for glioma imaging. In addition to amino acid tracers such ...
The purpose of this study was to investigate the potential of 3′-deoxy-3′-[18F]fluorothymidine ([18F...
Background: Reprogrammed cellular metabolism is a cancer hallmark. In addition to increased glycolys...
In glioma patients, differentiation between tumor progression (TP) and treatment-related changes (TR...
Purpose PET using radiolabeled amino acid [F-18]-fluoro-ethyl-(L)-tyrosine (FET-PET) is a well-estab...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
Background: Selective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (...
BackgroundSelective uptake of (18)F-fluoro-ethyl-tyrosine (18F-FET) is used in high-grade glioma (HG...
Selective uptake of (18)F-fluoro-ethyl-tyrosine ($^{18}$F-FET) is used in high-grade glioma (HGG) to...
The PET tracer O-(2-[18F]Fluoroethyl)-l-tyrosine (FET) has been shown to be valuable for different r...
OBJECTIVE The aim of this prospective longitudinal study was to identify static and dynamic O-(2-[(...
Item does not contain fulltext3'-deoxy-3'-(18)F-fluorothymidine ((18)F-FLT) is a radiopharmaceutical...
BackgroundO-(2-18 F-fluoroethyl)-L-tyrosine-(FET)-PET may be helpful to improve the definition of ra...
The standard therapy strategy for high-grade glioma (HGG) is based on the maximal surgery followed b...
BackgroundPET represents a valuable tool for glioma imaging. In addition to amino acid tracers such ...
The purpose of this study was to investigate the potential of 3′-deoxy-3′-[18F]fluorothymidine ([18F...
Background: Reprogrammed cellular metabolism is a cancer hallmark. In addition to increased glycolys...
In glioma patients, differentiation between tumor progression (TP) and treatment-related changes (TR...
Purpose PET using radiolabeled amino acid [F-18]-fluoro-ethyl-(L)-tyrosine (FET-PET) is a well-estab...