Time-of-flight (TOF) PET/MR imaging is an emerging imaging technology with great capabilities offered by TOF to improve image quality and lesion detectability. We assessed, for the first time, the impact of TOF image reconstruction on PET quantification errors induced by MR imaging based attenuation correction (MRAC) using simulation and clinical PET/CT studies. Methods: Standard 4-class attenuation maps were derived by segmentation of CT images of 27 patients undergoing PET/CT examinations into background air, lung, soft-tissue, and fat tissue classes, followed by the assignment of predefined attenuation coefficients to each class. For each patient, 4 PET images were reconstructed: non-TOF and TOF both corrected for attenuation using refer...
Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challen...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...
Time-of-flight (TOF) PET/MR imaging is an emerging imaging technology with great capabilities offere...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Quantitative PET imaging relies on accurate attenuation correction. Recently, there has been growing...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
The joint maximum-likelihood reconstruction of activity and attenuation (MLAA) for emission-based at...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
Purpose To evaluate the magnitude and anatomic extent of the artifacts introduced on positron emissi...
Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challen...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...
Time-of-flight (TOF) PET/MR imaging is an emerging imaging technology with great capabilities offere...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
Quantitative PET imaging relies on accurate attenuation correction. Recently, there has been growing...
We studied whether TOF reduces error propagation from attenuation correction to PET image reconstruc...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
The joint maximum-likelihood reconstruction of activity and attenuation (MLAA) for emission-based at...
While the pursuit of better time resolution in positron emission tomography (PET) is rapidly evolvin...
In standard segmentation-based MRI-guided attenuation correction (MRAC) of PET data on hybrid PET/MR...
Purpose To evaluate the magnitude and anatomic extent of the artifacts introduced on positron emissi...
Purpose: In quantitative PET/MR imaging, attenuation correction (AC) of PET data is markedly challen...
Time-of-flight (TOF) PET data provide an effective means for attenuation correction (AC) when no (or...
Purpose: Attenuation correction (AC) is essential for quantitative PET imaging. In the absence of co...