Segmentation of positron emission tomography (PET) images is an important objective because accurate measurement of signal from radio-tracer activity in a region of interest is critical for disease treatment and diagnosis. In this study, we present the use of a graph based method for providing robust, accurate, and reliable segmentation of functional volumes on PET images from standardized uptake values (SUVs). We validated the success of the segmentation method on different PET phantoms including ground truth CT simulation, and compared it to two well-known threshold based segmentation methods. Furthermore, we assessed intra-and inter-observer variation in delineation accuracy as well as reproducibility of delineations using real clinical ...
The segmentation of metastatic volumes in PET is usually per-formed by thresholding methods. In a cl...
International audienceIntroduction: Automatic functional volume segmentation in PET images is a chal...
PURPOSE: A new gradient-based method for segmenting FDG-PET images is described and validated. METHO...
Target volume delineation of Positron Emission Tomography (PET) images in radiation treatment planni...
International audiencePURPOSE: Current state-of-the-art algorithms for functional uptake volume segm...
Segmentation of multi-dimensional functional positron emission tomography (PET) studies into regions...
Abstract—Quantitative positron emission tomography (PET) studies provide in vivo measurements of dyn...
Aim: PET imaging is increasingly utilized for radiation treatment planning. Nevertheless, accurate s...
Historically, anatomical CT and MR images were used to delineate the gross tumour volumes (GTVs) for...
Although positron emission tomography (PET) has been commonly used in oncology, for radiation therap...
Tumor functional volume (FV) and its mean activity concentration (mAC) are the quantities derived fr...
PET is widely adopted in clinical oncology to investigate the biochemical characteristics of maligna...
BackgroundAutomatic and semi-automatic segmentation methods for PET serve as alternatives to manual ...
Robust tumor activity quantification recently finds application in challenging medical scenarios lik...
The segmentation of metastatic volumes in PET is usually per-formed by thresholding methods. In a cl...
International audienceIntroduction: Automatic functional volume segmentation in PET images is a chal...
PURPOSE: A new gradient-based method for segmenting FDG-PET images is described and validated. METHO...
Target volume delineation of Positron Emission Tomography (PET) images in radiation treatment planni...
International audiencePURPOSE: Current state-of-the-art algorithms for functional uptake volume segm...
Segmentation of multi-dimensional functional positron emission tomography (PET) studies into regions...
Abstract—Quantitative positron emission tomography (PET) studies provide in vivo measurements of dyn...
Aim: PET imaging is increasingly utilized for radiation treatment planning. Nevertheless, accurate s...
Historically, anatomical CT and MR images were used to delineate the gross tumour volumes (GTVs) for...
Although positron emission tomography (PET) has been commonly used in oncology, for radiation therap...
Tumor functional volume (FV) and its mean activity concentration (mAC) are the quantities derived fr...
PET is widely adopted in clinical oncology to investigate the biochemical characteristics of maligna...
BackgroundAutomatic and semi-automatic segmentation methods for PET serve as alternatives to manual ...
Robust tumor activity quantification recently finds application in challenging medical scenarios lik...
The segmentation of metastatic volumes in PET is usually per-formed by thresholding methods. In a cl...
International audienceIntroduction: Automatic functional volume segmentation in PET images is a chal...
PURPOSE: A new gradient-based method for segmenting FDG-PET images is described and validated. METHO...