Positron emission tomography (PET) is a functional imaging modality widely used in neuroscience studies. To obtain meaningful quantitative results from PET images, attenuation correction is necessary during image reconstruction. For PET/MR hybrid systems, PET attenuation is challenging as magnetic resonance (MR) images do not reflect attenuation coefficients directly. To address this issue, we present deep neural network methods to derive the continuous attenuation coefficients for brain PET imaging from MR images. With only Dixon MR images as the network input, the existing U-net structure was adopted and analysis using forty patient data sets shows it is superior to other Dixon-based methods. When both Dixon and zero echo time (ZTE) image...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
UNLABELLED: For quantitative PET information, correction of tissue photon attenuation is mandatory. ...
Attenuation correction of PET data acquired in hybrid MR/PET scanners is still a challenge. Differen...
One of the main technical challenges of PET/MRI is to achieve an accurate PET attenuation correction...
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 ...
Dedicated brain positron emission tomography (PET) devices can provide higher-resolution images with...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
Recent emerging hybrid technology of positron emission tomography/magnetic resonance (PET/MR) imagin...
Copyright © The Author(s) 2020. Recent emerging hybrid technology of positron emission tomography/ma...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
Abstract Background To develop and evaluate the feasibility of a data-driven deep learning approach ...
Introduction Robust and reliable attenuation correction (AC) is a prerequisite for accurate quantifi...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
UNLABELLED: For quantitative PET information, correction of tissue photon attenuation is mandatory. ...
Attenuation correction of PET data acquired in hybrid MR/PET scanners is still a challenge. Differen...
One of the main technical challenges of PET/MRI is to achieve an accurate PET attenuation correction...
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 ...
Dedicated brain positron emission tomography (PET) devices can provide higher-resolution images with...
PET attenuation correction (AC) on systems lacking CT/transmission scanning, such as dedicated brain...
Recent emerging hybrid technology of positron emission tomography/magnetic resonance (PET/MR) imagin...
Copyright © The Author(s) 2020. Recent emerging hybrid technology of positron emission tomography/ma...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
Abstract Background To develop and evaluate the feasibility of a data-driven deep learning approach ...
Introduction Robust and reliable attenuation correction (AC) is a prerequisite for accurate quantifi...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
For quantitative PET information, correction of tissue photon attenuation is mandatory. Generally in...
UNLABELLED: For quantitative PET information, correction of tissue photon attenuation is mandatory. ...
Attenuation correction of PET data acquired in hybrid MR/PET scanners is still a challenge. Differen...