Magnetization transfer contrast magnetic resonance fingerprinting (MTC-MRF) is a novel quantitative imaging technique that simultaneously measures several tissue parameters of semisolid macromolecule and free bulk water. In this study, we propose an Only-Train-Once MR fingerprinting (OTOM) framework that estimates the free bulk water and MTC tissue parameters from MR fingerprints regardless of MRF schedule, thereby avoiding time-consuming process such as generation of training dataset and network training according to each MRF schedule. A recurrent neural network is designed to cope with two types of variants of MRF schedules: 1) various lengths and 2) various patterns. Experiments on digital phantoms and in vivo data demonstrate that our a...
Magnetic Resonance Fingerprinting (MRF) is a relatively new approach for simultaneously estimating m...
To study the effects of magnetization transfer (MT, in which a semi-solid spin pool interacts with t...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/154317/1/jmri26877.pdfhttps://deepblue...
Magnetic resonance fingerprinting (MRF) is a quantitative imaging technique that can simultaneously ...
MR fingerprinting (MRF) is an innovative approach to quantitative MRI. A typical disadvantage of dic...
Magnetic resonance fingerprinting (MRF) is a rapidly developing approach for fast quantitative MRI. ...
Abstract Current routine MRI examinations rely on the acqui-sition of qualitative images that have a...
Magnetic resonance fingerprinting (MRF) provides a unique concept for simultaneous and fast acquisit...
Magnetic resonance fingerprinting (MRF) is a promising tool for fast and multiparametric quantitativ...
Magnetic resonance fingerprinting (MRF) is a quantitative MRI (qMRI) framework that provides simulta...
Magnetic Resonance Fingerprinting (MRF) is a novel technique that simultaneously estimates multiple ...
Current spatiotemporal deep learning approaches to Magnetic Resonance Fingerprinting (MRF) build art...
© 2017 International Society for Magnetic Resonance in Medicine Purpose: This article introduces a c...
International audienceMagnetic resonance fingerprinting (MRF) provides a unique concept for simultan...
Magnetic Resonance Fingerprinting (MRF) enables the simultaneous quantification of multiple properti...
Magnetic Resonance Fingerprinting (MRF) is a relatively new approach for simultaneously estimating m...
To study the effects of magnetization transfer (MT, in which a semi-solid spin pool interacts with t...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/154317/1/jmri26877.pdfhttps://deepblue...
Magnetic resonance fingerprinting (MRF) is a quantitative imaging technique that can simultaneously ...
MR fingerprinting (MRF) is an innovative approach to quantitative MRI. A typical disadvantage of dic...
Magnetic resonance fingerprinting (MRF) is a rapidly developing approach for fast quantitative MRI. ...
Abstract Current routine MRI examinations rely on the acqui-sition of qualitative images that have a...
Magnetic resonance fingerprinting (MRF) provides a unique concept for simultaneous and fast acquisit...
Magnetic resonance fingerprinting (MRF) is a promising tool for fast and multiparametric quantitativ...
Magnetic resonance fingerprinting (MRF) is a quantitative MRI (qMRI) framework that provides simulta...
Magnetic Resonance Fingerprinting (MRF) is a novel technique that simultaneously estimates multiple ...
Current spatiotemporal deep learning approaches to Magnetic Resonance Fingerprinting (MRF) build art...
© 2017 International Society for Magnetic Resonance in Medicine Purpose: This article introduces a c...
International audienceMagnetic resonance fingerprinting (MRF) provides a unique concept for simultan...
Magnetic Resonance Fingerprinting (MRF) enables the simultaneous quantification of multiple properti...
Magnetic Resonance Fingerprinting (MRF) is a relatively new approach for simultaneously estimating m...
To study the effects of magnetization transfer (MT, in which a semi-solid spin pool interacts with t...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/154317/1/jmri26877.pdfhttps://deepblue...