Artifacts caused by patient breathing and movement during PET data acquisition affect image quality. Respiratory gating is commonly used to gate the list-mode PET data into multiple bins over a respiratory cycle. Non-rigid registration of respiratory-gated PET images can reduce motion artifacts and preserve count statistics, but it is time consuming. In this work, we propose an unsupervised non-rigid image registration framework using deep learning for motion correction. Our network uses a differentiable spatial transformer layer to warp the moving image to the fixed image and uses a stacked structure for deformation field refinement. Estimated deformation fields were incorporated into an iterative image reconstruction algorithm to perform ...
To correct for respiratory motion in PET imaging, an interpretable and unsupervised deep learning te...
PET image degradation imposed by patient respiratory motion is a well-established problem in clinica...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory motion is one of the main sources of motion artifacts in positron emission tomography (P...
Respiratory motion is one of the main sources of motion artifacts in positron emission tomography (P...
For PET/CT, the CT transmission data are used to correct the PET emission data for attenuation. Howe...
A major challenge in thoracic PET imaging is respiratory motion, which degrades image quality to the...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Purpose: We propose a novel approach for PET respiratory motion correction using tagged-MRI and simu...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
To correct for respiratory motion in PET imaging, an interpretable and unsupervised deep learning te...
PET image degradation imposed by patient respiratory motion is a well-established problem in clinica...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory motion is one of the main sources of motion artifacts in positron emission tomography (P...
Respiratory motion is one of the main sources of motion artifacts in positron emission tomography (P...
For PET/CT, the CT transmission data are used to correct the PET emission data for attenuation. Howe...
A major challenge in thoracic PET imaging is respiratory motion, which degrades image quality to the...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
Respiratory and cardiac motion leads to image degradation in Positron Emission Tomography (PET), whi...
Purpose: We propose a novel approach for PET respiratory motion correction using tagged-MRI and simu...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
International audienceObjectives: Respiratory motion correction using elastic transformations applie...
To correct for respiratory motion in PET imaging, an interpretable and unsupervised deep learning te...
PET image degradation imposed by patient respiratory motion is a well-established problem in clinica...
Respiratory gating in lung PET imaging to compensate for respiratory motion artifacts is a current r...