International audienceThe correction of attenuation effects in Positron Emission Tomography (PET) imaging is fundamental to obtain a correct radiotracer distribution. However direct measurement of this attenuation map is not error-free and normally results in additional ionization radiation dose to the patient. Here, we explore the task of whole body attenuation map generation using 3D deep neural networks. We analyze the advantages thar an adversarial network training cand provide to such models. The networks are trained to learn the mapping from non attenuation corrected [18 ^F]-fluorodeoxyglucose PET images to a synthetic Computerized Tomography (sCT) and also to label the input voxel tissue. Then the sCT image is further refined using a...
PurposeTo demonstrate the feasibility of CT-less attenuation and scatter correction (ASC) in the ima...
For PET/CT, the CT transmission data are used to correct the PET emission data for attenuation. Howe...
Dedicated brain positron emission tomography (PET) devices can provide higher-resolution images with...
The correction of attenuation effects in Positron Emission Tomography (PET) imaging is fundamental t...
Background: Attenuation correction (AC) of PET data is usually performed using a second imaging for ...
The correction of attenuation effects in Positron Emission Tomography (PET) imaging is fundamental t...
Abstract Background To develop and evaluate the feasibility of a data-driven deep learning approach ...
Positron emission tomography (PET) provides functional images useful to track metabolic processes in...
The lack of physically measured attenuation maps (μ-maps) for attenuation and scatter correction is ...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
This thesis explores the reduction of the patient radiation dose in screening Positron Emission Tomo...
One of the main technical challenges of PET/MRI is to achieve an accurate PET attenuation correction...
This thesis explores the reduction of the patient radiation dose in screening Positron Emission Tomo...
PurposeTo demonstrate the feasibility of CT-less attenuation and scatter correction (ASC) in the ima...
Whole-body attenuation correction (AC) is still challenging in combined PET/MR scanners. We describe...
PurposeTo demonstrate the feasibility of CT-less attenuation and scatter correction (ASC) in the ima...
For PET/CT, the CT transmission data are used to correct the PET emission data for attenuation. Howe...
Dedicated brain positron emission tomography (PET) devices can provide higher-resolution images with...
The correction of attenuation effects in Positron Emission Tomography (PET) imaging is fundamental t...
Background: Attenuation correction (AC) of PET data is usually performed using a second imaging for ...
The correction of attenuation effects in Positron Emission Tomography (PET) imaging is fundamental t...
Abstract Background To develop and evaluate the feasibility of a data-driven deep learning approach ...
Positron emission tomography (PET) provides functional images useful to track metabolic processes in...
The lack of physically measured attenuation maps (μ-maps) for attenuation and scatter correction is ...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
This thesis explores the reduction of the patient radiation dose in screening Positron Emission Tomo...
One of the main technical challenges of PET/MRI is to achieve an accurate PET attenuation correction...
This thesis explores the reduction of the patient radiation dose in screening Positron Emission Tomo...
PurposeTo demonstrate the feasibility of CT-less attenuation and scatter correction (ASC) in the ima...
Whole-body attenuation correction (AC) is still challenging in combined PET/MR scanners. We describe...
PurposeTo demonstrate the feasibility of CT-less attenuation and scatter correction (ASC) in the ima...
For PET/CT, the CT transmission data are used to correct the PET emission data for attenuation. Howe...
Dedicated brain positron emission tomography (PET) devices can provide higher-resolution images with...