Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challenged by the need of deriving accurate attenuation maps from MR images. A number of strategies have been developed for MRI-guided attenuation correction with different degrees of success. In this work, we compare the quantitative performance of three generic AC methods, including standard 3-class MR segmentation-based, advanced atlas-registration-based and emission-based approaches in the context of brain time-of-flight (TOF) PET/MRI.Materials and methods: Fourteen patients referred for diagnostic MRI and F-18-FDG PET/CT brain scans were included in this comparative study. For each study, PET images were reconstructed using four different atten...
Combined PET/MR provides simultaneous molecular and functional information in an anatomical context ...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challen...
In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challenged by th...
In this work, we assessed the feasibility of attenuation correction (AC) based on a multi-atlas-base...
To assess the feasibility of attenuation correction (AC) based on a multi atlas-based method (m-Atla...
Combined PET/MR provides at the same time molecular and functional imaging as well as excellent soft...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
Aim To accurately quantify the radioactivity concentration measured by PET, emission data need to be...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
The joint maximum-likelihood reconstruction of activity and attenuation (MLAA) for emission-based at...
Combined PET/MR provides simultaneous molecular and functional information in an anatomical context ...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challen...
In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challenged by th...
In this work, we assessed the feasibility of attenuation correction (AC) based on a multi-atlas-base...
To assess the feasibility of attenuation correction (AC) based on a multi atlas-based method (m-Atla...
Combined PET/MR provides at the same time molecular and functional imaging as well as excellent soft...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
Aim To accurately quantify the radioactivity concentration measured by PET, emission data need to be...
PET/MRI is an emerging dual-modality imaging technology that requires new approaches to PET attenuat...
The joint maximum-likelihood reconstruction of activity and attenuation (MLAA) for emission-based at...
Combined PET/MR provides simultaneous molecular and functional information in an anatomical context ...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...