Contains fulltext : 109250.pdf (publisher's version ) (Closed access) Contains fulltext : 109250-1.pdf (postprint version ) (Open Access)PURPOSE: [(18)F]-fluorodeoxyglucose-positron emission tomography (FDG-PET) images are usually quantitatively analyzed in "whole-tumor" volumes of interest. Also parameters determined with dynamic PET acquisitions, such as the Patlak glucose metabolic rate (MR(glc)) and pharmacokinetic rate constants of two-tissue compartment modeling, are most often derived per lesion. We propose segmentation of tumors to determine tumor heterogeneity, potentially useful for dose-painting in radiotherapy and elucidating mechanisms of FDG uptake. METHODS...
Quantitation of glucose uptake in tumors by dynamic FDG-PET has less glucose bias and lower variabil...
Purpose\ud \ud Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure...
Purpose: To investigate the kinetics of 18F-fluorodeoxyglucose (18F-FDG) by positron emission tomogr...
PURPOSE: [(18)F]-fluorodeoxyglucose-positron emission tomography (FDG-PET) images are usually quanti...
Contains fulltext : 71217.pdf (publisher's version ) (Closed access)Tumor delineat...
Tumor delineation using noninvasive medical imaging modalities is important to determine the target ...
Tumor delineation using noninvasive medical imaging modalities is important to determine the target ...
Background: Metabolic tumor volume assessment using positron-emission tomography [PET] may be of int...
Many factors, including tumor size, plasma glucose level, and the time course of 2-[18F]fluoro-2-deo...
PURPOSE:Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to...
Purpose: Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due t...
Tumor heterogeneity can be observed between and within tumors through medical imaging such as positr...
Tumor heterogeneity can be observed between and within tumors through medical imaging such as positr...
Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to the pre...
Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to the pre...
Quantitation of glucose uptake in tumors by dynamic FDG-PET has less glucose bias and lower variabil...
Purpose\ud \ud Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure...
Purpose: To investigate the kinetics of 18F-fluorodeoxyglucose (18F-FDG) by positron emission tomogr...
PURPOSE: [(18)F]-fluorodeoxyglucose-positron emission tomography (FDG-PET) images are usually quanti...
Contains fulltext : 71217.pdf (publisher's version ) (Closed access)Tumor delineat...
Tumor delineation using noninvasive medical imaging modalities is important to determine the target ...
Tumor delineation using noninvasive medical imaging modalities is important to determine the target ...
Background: Metabolic tumor volume assessment using positron-emission tomography [PET] may be of int...
Many factors, including tumor size, plasma glucose level, and the time course of 2-[18F]fluoro-2-deo...
PURPOSE:Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to...
Purpose: Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due t...
Tumor heterogeneity can be observed between and within tumors through medical imaging such as positr...
Tumor heterogeneity can be observed between and within tumors through medical imaging such as positr...
Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to the pre...
Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure due to the pre...
Quantitation of glucose uptake in tumors by dynamic FDG-PET has less glucose bias and lower variabil...
Purpose\ud \ud Intratumoral metabolic heterogeneity may increase the likelihood of treatment failure...
Purpose: To investigate the kinetics of 18F-fluorodeoxyglucose (18F-FDG) by positron emission tomogr...