Purpose: The aim of the study was to compare simple SUVmax and SUVpeak based segmentation methods for calculating the lung tumour volume, compared to a pathology ground truth.Methods: Thirty patients diagnosed with early stage Non-Small Cell lung cancer (NSCLC) underwent surgical resection in the Netherlands between 2006 and 2008. FDG PET-CT scans for these patients were acquired within a median of 20 days before surgery. The tumour volume for each percentage SUVmax and SUVpeak threshold, with and without background correction, was calculated for each patient. The percentage threshold that provided the tumour volume that corresponded best with the pathology volume was considered to be the optimal threshold. The optimal thresholds were plott...
18F-FDG PET is the most accurate noninvasive modality for stag-ing mediastinal lymph nodes in lung c...
Contains fulltext : 172176.pdf (Publisher’s version ) (Closed access)(18)F-FDG PET...
PURPOSEIn this study, we aimed to compare the tumor sizes determined by maximum morphological comput...
Purpose: The aim of the study was to compare simple SUVmax and SUVpeak based segmentation methods fo...
Abstract Objectives To propose an easily applicable segmentation method (perPET-RT) for delineation ...
PET with 18F-FDG (18F-FDG PET) is increasingly used in the definition of target volumes for radiothe...
Purpose The objective of the study was to validate an adaptive, contrast-oriented thresholding algor...
PURPOSE: Target-volume delineation for radiation treatment to the head and neck area traditionally i...
Aim: in oncological imaging the 18F-FDG tissues accumulation evaluated with PET-CT is proportional t...
The performance of an average standard uptake value (SUV) over a 1-mL-volume sphere within an (18)F-...
3 boyutlu konformal radyoterapinin amacı hedef volümde istenilen dozu oluştururken, sağlıklı dokuda ...
International audienceUNLABELLED: The objectives of this study were to investigate the relationship ...
Introduction: Standard uptake value (SUV) is a quantitative measure for the preferential uptake of a...
PURPOSE: FDG PET is increasingly incorporated into radiation treatment planning of head and neck can...
INTRODUCTION: Standard uptake value (SUV) is a quantitative measure for the preferential uptake of a...
18F-FDG PET is the most accurate noninvasive modality for stag-ing mediastinal lymph nodes in lung c...
Contains fulltext : 172176.pdf (Publisher’s version ) (Closed access)(18)F-FDG PET...
PURPOSEIn this study, we aimed to compare the tumor sizes determined by maximum morphological comput...
Purpose: The aim of the study was to compare simple SUVmax and SUVpeak based segmentation methods fo...
Abstract Objectives To propose an easily applicable segmentation method (perPET-RT) for delineation ...
PET with 18F-FDG (18F-FDG PET) is increasingly used in the definition of target volumes for radiothe...
Purpose The objective of the study was to validate an adaptive, contrast-oriented thresholding algor...
PURPOSE: Target-volume delineation for radiation treatment to the head and neck area traditionally i...
Aim: in oncological imaging the 18F-FDG tissues accumulation evaluated with PET-CT is proportional t...
The performance of an average standard uptake value (SUV) over a 1-mL-volume sphere within an (18)F-...
3 boyutlu konformal radyoterapinin amacı hedef volümde istenilen dozu oluştururken, sağlıklı dokuda ...
International audienceUNLABELLED: The objectives of this study were to investigate the relationship ...
Introduction: Standard uptake value (SUV) is a quantitative measure for the preferential uptake of a...
PURPOSE: FDG PET is increasingly incorporated into radiation treatment planning of head and neck can...
INTRODUCTION: Standard uptake value (SUV) is a quantitative measure for the preferential uptake of a...
18F-FDG PET is the most accurate noninvasive modality for stag-ing mediastinal lymph nodes in lung c...
Contains fulltext : 172176.pdf (Publisher’s version ) (Closed access)(18)F-FDG PET...
PURPOSEIn this study, we aimed to compare the tumor sizes determined by maximum morphological comput...