OBJECT: The aim of this study was to compare the contribution of the tracers 11C-methionine (Met) and 18F-fluorodeoxy-glucose (FDG) in positron emission tomography (PET)-guided stereotactic brain biopsy. METHODS: Forty-five patients underwent combined Met-PET and FDG-PET studies associated with computerized tomography (CT)- or magnetic resonance (MR)-guided stereotactic biopsy. Each patient presented with a lesion that was in proximity to the cortical or subcortical gray matter. The Met-PET and FDG-PET scans were analyzed to determine which tracer offers the best information to guide at least one stereotactic biopsy trajectory. Histologically based diagnoses were rendered in all patients (39 tumors, six nontumorous lesions) and biopsies wer...
Gliomas are regionally heterogeneous tumors. The local relationship between histologic features and ...
OBJECTIVE: To evaluate the interest of integrating positron emission tomography (PET) images with th...
Positron emission tomography (PET) is an imaging technology that can detect and characterize tumors ...
We compared the contributions of the labeled tracers (11)C-methionine (Met) and (18)F-FDG for PET-gu...
The aim of the present study was to compare the contribution of the labelled tracers [C-11]methionin...
The aim of the present study was to compare the contribution of the labelled tracers [C-11]methionin...
We compared the contributions of the labeled tracers 11C-methionine (Met) and 18F-FDG for PET-guided...
OBJECT: The aim of this study was to evaluate the integration of positron emission tomography (PET) ...
Gliomas are regionally heterogeneous tumors. The local relationship between histologic features and ...
In order to take advantage of the metabolic information provided by positron emission tomography (PE...
OBJECT: In the management of brainstem lesions, the place of stereotactic biopsy sampling remains de...
Purpose: Conventional MRI based on contrast enhancement and T2/FLAIR is often not su cient in differ...
PURPOSE: Several studies have shown that the prognosis of oligodendroglial tumor is dependent on the...
OBJECT: The diagnostic usefulness of (11)C-methionine PET scans in gliomas is still controversial. T...
OBJECT: Positron emission tomography with L-[methyl-11C]methionine (MET-PET) provides information on...
Gliomas are regionally heterogeneous tumors. The local relationship between histologic features and ...
OBJECTIVE: To evaluate the interest of integrating positron emission tomography (PET) images with th...
Positron emission tomography (PET) is an imaging technology that can detect and characterize tumors ...
We compared the contributions of the labeled tracers (11)C-methionine (Met) and (18)F-FDG for PET-gu...
The aim of the present study was to compare the contribution of the labelled tracers [C-11]methionin...
The aim of the present study was to compare the contribution of the labelled tracers [C-11]methionin...
We compared the contributions of the labeled tracers 11C-methionine (Met) and 18F-FDG for PET-guided...
OBJECT: The aim of this study was to evaluate the integration of positron emission tomography (PET) ...
Gliomas are regionally heterogeneous tumors. The local relationship between histologic features and ...
In order to take advantage of the metabolic information provided by positron emission tomography (PE...
OBJECT: In the management of brainstem lesions, the place of stereotactic biopsy sampling remains de...
Purpose: Conventional MRI based on contrast enhancement and T2/FLAIR is often not su cient in differ...
PURPOSE: Several studies have shown that the prognosis of oligodendroglial tumor is dependent on the...
OBJECT: The diagnostic usefulness of (11)C-methionine PET scans in gliomas is still controversial. T...
OBJECT: Positron emission tomography with L-[methyl-11C]methionine (MET-PET) provides information on...
Gliomas are regionally heterogeneous tumors. The local relationship between histologic features and ...
OBJECTIVE: To evaluate the interest of integrating positron emission tomography (PET) images with th...
Positron emission tomography (PET) is an imaging technology that can detect and characterize tumors ...