Purpose: To demonstrate feasibility of transceive phase mapping with the PLANET method and its application for conductivity reconstruction in the brain. Methods: Accuracy and precision of transceive phase (ϕ±) estimation with PLANET, an ellipse fitting approach to phase-cycled balanced steady-state free precession (bSSFP) data, were assessed with simulations and measurements and compared to standard bSSFP. Measurements were conducted on a homogeneous phantom and in the brain of healthy volunteers at 3 tesla. Conductivity maps were reconstructed with Helmholtz-based electrical properties tomography. In measurements, PLANET was also compared to a reference technique for transceive phase mapping, i.e., spin echo. Results: Accuracy and precisio...
To investigate deep learning electrical properties tomography (EPT) for application on different sim...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
Purpose: To demonstrate feasibility of transceive phase mapping with the PLANET method and its appli...
Purpose: To introduce phase-based conductivity mapping from a configuration space analysis.M...
Purpose: To demonstrate the feasibility of a novel, ellipse fitting approach, named PLANET, for simu...
PURPOSE: In this work we demonstrate how sequence parameter settings influence the accuracy and prec...
Purpose: To denoise B+1 phase using a deep learning method for phase-based in vivo electrical conduc...
PURPOSE: The PLANET method was designed to simultaneously reconstruct maps of T1 and T2 , the off-re...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Purpose: 46 investigate a new approach for more completely accounting for off-resonance affects in t...
This thesis focuses on the development and applications of magnetic resonance electrical properties ...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/138865/1/mrm26590_am.pdfhttps://deepbl...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
Compared to standard spoiled gradient echo (SPGR)-methods, balanced steady-state free precession (bS...
To investigate deep learning electrical properties tomography (EPT) for application on different sim...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
Purpose: To demonstrate feasibility of transceive phase mapping with the PLANET method and its appli...
Purpose: To introduce phase-based conductivity mapping from a configuration space analysis.M...
Purpose: To demonstrate the feasibility of a novel, ellipse fitting approach, named PLANET, for simu...
PURPOSE: In this work we demonstrate how sequence parameter settings influence the accuracy and prec...
Purpose: To denoise B+1 phase using a deep learning method for phase-based in vivo electrical conduc...
PURPOSE: The PLANET method was designed to simultaneously reconstruct maps of T1 and T2 , the off-re...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Purpose: 46 investigate a new approach for more completely accounting for off-resonance affects in t...
This thesis focuses on the development and applications of magnetic resonance electrical properties ...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/138865/1/mrm26590_am.pdfhttps://deepbl...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
Compared to standard spoiled gradient echo (SPGR)-methods, balanced steady-state free precession (bS...
To investigate deep learning electrical properties tomography (EPT) for application on different sim...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...