PURPOSE: Positron emission tomography (PET) is a highly sensitive medical imaging technique commonly used to detect and assess tumor lesions. Magnetic resonance imaging (MRI) provides high resolution anatomical images with different contrasts and a range of additional information important for cancer diagnosis. Recently, simultaneous PET-MR systems have been released with the promise to provide complementary information from both modalities in a single examination. Due to long scan times, subject nonrigid bulk motion, i.e., changes of the patient's position on the scanner table leading to nonrigid changes of the patient's anatomy, during data acquisition can negatively impair image quality and tracer uptake quantification. A 3D MR-acquisiti...
<div><p>Positron Emission Tomography (PET) images are prone to motion artefacts due to the long acqu...
Bulk body motion may randomly occur during PET acquisitions introducing blurring, attenuation emissi...
Hybrid PET/MR combines the exceptional molecular sensitivity of PET with the high resolution and ver...
Purpose: We propose a novel approach for PET respiratory motion correction using tagged-MRI and simu...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
We present an approach for concurrent reconstruction of respiratory motion-compensated abdominal dyn...
Patient motion due to respiration can lead to artefacts and blurring in positron emission tomography...
In Positron Emission Tomography (PET) imaging, patient motion due to respiration can lead to artefac...
Subject motion in positron emission tomography (PET) is a key factor that degrades image resolution ...
Purpose: To develop a motion correction for Positron-Emission-Tomography (PET) using simultaneously ...
Respiratory motion is known to degrade image quality in PET imaging. The necessary acquisition time ...
In Positron Emission Tomography (PET) imaging, patient motion due to respiration can lead to artefac...
Purpose Positron emission tomography (PET) of the thorax region is impaired by respiratory patient m...
In this work, novel algorithms for 4D (3D + respiratory) and 5D (3D + respiratory + cardiac) motion-...
Respiratory and cardiac motion is the most serious limitation to whole-body PET, resulting in spatia...
<div><p>Positron Emission Tomography (PET) images are prone to motion artefacts due to the long acqu...
Bulk body motion may randomly occur during PET acquisitions introducing blurring, attenuation emissi...
Hybrid PET/MR combines the exceptional molecular sensitivity of PET with the high resolution and ver...
Purpose: We propose a novel approach for PET respiratory motion correction using tagged-MRI and simu...
Respiratory motion during PET acquisition may lead to blurring in resulting images and underestimati...
We present an approach for concurrent reconstruction of respiratory motion-compensated abdominal dyn...
Patient motion due to respiration can lead to artefacts and blurring in positron emission tomography...
In Positron Emission Tomography (PET) imaging, patient motion due to respiration can lead to artefac...
Subject motion in positron emission tomography (PET) is a key factor that degrades image resolution ...
Purpose: To develop a motion correction for Positron-Emission-Tomography (PET) using simultaneously ...
Respiratory motion is known to degrade image quality in PET imaging. The necessary acquisition time ...
In Positron Emission Tomography (PET) imaging, patient motion due to respiration can lead to artefac...
Purpose Positron emission tomography (PET) of the thorax region is impaired by respiratory patient m...
In this work, novel algorithms for 4D (3D + respiratory) and 5D (3D + respiratory + cardiac) motion-...
Respiratory and cardiac motion is the most serious limitation to whole-body PET, resulting in spatia...
<div><p>Positron Emission Tomography (PET) images are prone to motion artefacts due to the long acqu...
Bulk body motion may randomly occur during PET acquisitions introducing blurring, attenuation emissi...
Hybrid PET/MR combines the exceptional molecular sensitivity of PET with the high resolution and ver...