A data-driven method for respiratory gating in PET has recently been commercially developed. We sought to compare the performance of the algorithm to an external, device-based system for oncological [18F]-FDG PET/CT imaging. Methods: 144 whole-body [18F]-FDG PET/CT examinations were acquired using a Discovery D690 or D710 PET/CT scanner (GE Healthcare), with a respiratory gating waveform recorded by an external, device based respiratory gating system. In each examination, two of the bed positions covering the liver and lung bases were acquired with duration of 6 minutes. Quiescent period gating retaining ~50% of coincidences was then able to produce images with an effective duration of 3 minutes for these two bed positions, matching the oth...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Respiratory motion can degrade PET image quality and lead to inaccurate quantification of lesion upt...
A data-driven method for respiratory gating in PET has recently been commercially developed. We soug...
Aim: The aim of this prospective study was to evaluate a data-driven gating software's performance, ...
Aim: The aim of this prospective study was to evaluate a data-driven gating software's performance, ...
Background Respiratory motion during PET imaging reduces image quality. Data-driven gating (DDG) bas...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
ObjectiveRespiratory motion in 18F-fluorodeoxyglucose positron emission tomography/computed tomograp...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven resp...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Respiratory motion can degrade PET image quality and lead to inaccurate quantification of lesion upt...
A data-driven method for respiratory gating in PET has recently been commercially developed. We soug...
Aim: The aim of this prospective study was to evaluate a data-driven gating software's performance, ...
Aim: The aim of this prospective study was to evaluate a data-driven gating software's performance, ...
Background Respiratory motion during PET imaging reduces image quality. Data-driven gating (DDG) bas...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven res...
ObjectiveRespiratory motion in 18F-fluorodeoxyglucose positron emission tomography/computed tomograp...
Background We aimed to evaluate the clinical robustness of a commercially developed data-driven resp...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Objective: Respiratory motion can degrade PET image quality and lead to inaccurate quantification o...
Respiratory motion can degrade PET image quality and lead to inaccurate quantification of lesion upt...