Purpose We compare the performance of three commonly used MRI-guided attenuation correction approaches in torso PET/MRI, namely segmentation-, atlas-, and deep learning-based algorithms. Methods Twenty-five co-registered torso F-18-FDG PET/CT and PET/MR images were enrolled. PET attenuation maps were generated from in-phase Dixon MRI using a three-tissue class segmentation-based approach (soft-tissue, lung, and background air), voxel-wise weighting atlas-based approach, and a residual convolutional neural network. The bias in standardized uptake value (SUV) was calculated for each approach considering CT-based attenuation corrected PET images as reference. In addition to the overall performance assessment of these approaches, the primary fo...
We compare the quantitative accuracy of magnetic resonance imaging (MRI)-based attenuation correctio...
Whole-body attenuation correction (AC) is still challenging in combined PET/MR scanners. We describe...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
Purpose: We compare the performance of three commonly used MRI-guided attenuation correction approac...
Purpose We compare the performance of three commonly used MRI-guided attenuation correction approach...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
Background: Attenuation correction (AC) of PET data is usually performed using a second imaging for ...
This study was to obtain voxel-wise PET accuracy and precision using tissue-segmentation for attenua...
Quantitative whole-body PET/MR imaging is challenged by the lack of accurate and robust strategies f...
Abstract Despite being thirteen years since the installation of the first PET-MR system, the scanner...
Attenuation correction (AC) of whole-body PET data in combined PET/MRI tomographs is expected to be ...
OBJECTIVE: This study evaluates the feasibility of direct scatter and attenuation correction of whol...
Attenuation correction is an essential component of the long chain of data correction techniques req...
We compare the quantitative accuracy of magnetic resonance imaging (MRI)-based attenuation correctio...
Whole-body attenuation correction (AC) is still challenging in combined PET/MR scanners. We describe...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
Purpose: We compare the performance of three commonly used MRI-guided attenuation correction approac...
Purpose We compare the performance of three commonly used MRI-guided attenuation correction approach...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
Background: Attenuation correction (AC) of PET data is usually performed using a second imaging for ...
This study was to obtain voxel-wise PET accuracy and precision using tissue-segmentation for attenua...
Quantitative whole-body PET/MR imaging is challenged by the lack of accurate and robust strategies f...
Abstract Despite being thirteen years since the installation of the first PET-MR system, the scanner...
Attenuation correction (AC) of whole-body PET data in combined PET/MRI tomographs is expected to be ...
OBJECTIVE: This study evaluates the feasibility of direct scatter and attenuation correction of whol...
Attenuation correction is an essential component of the long chain of data correction techniques req...
We compare the quantitative accuracy of magnetic resonance imaging (MRI)-based attenuation correctio...
Whole-body attenuation correction (AC) is still challenging in combined PET/MR scanners. We describe...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...