PURPOSE: In this work we demonstrate how sequence parameter settings influence the accuracy and precision in T1 , T2 , and off-resonance maps obtained with the PLANET method for a single-component signal model. In addition, the performance of the method for the particular case of a two-component relaxation model for white matter tissue was assessed. METHODS: Numerical simulations were performed to investigate the influence of sequence parameter settings on the accuracy and precision in the estimated parameters for a single-component model, as well as for a two-component white matter model. Phantom and in vivo experiments were performed for validation. In addition, the effects of Gibbs ringing were investigated. RESULTS: By making a proper c...
Purpose: Determine the correct mathematical phase description for balanced steady-state free precess...
Multi-parametric quantitative MRI enables simultaneous measurement of MR parameters and offers the p...
Quantitative MRI methods that estimate multiple physical parameters simultaneously often require the...
PURPOSE: In this work we demonstrate how sequence parameter settings influence the accuracy and prec...
Purpose: To demonstrate feasibility of transceive phase mapping with the PLANET method and its appli...
PURPOSE: The PLANET method was designed to simultaneously reconstruct maps of T1 and T2 , the off-re...
Purpose: To demonstrate the feasibility of a novel, ellipse fitting approach, named PLANET, for simu...
Purpose/Introduction: Quantitative MR parameter mapping has been demonstrated to allow for improved ...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
PURPOSE: Quantitative MRI applications, such as mapping the T1 time of tissue, puts high demands on ...
Magnetic Resonance Imaging (MRI) is an important diagnostic tool for imaging soft tissue without the...
Purpose: To introduce phase-based conductivity mapping from a configuration space analysis.M...
Magnetic Resonance Imaging (MRI) is a flexible medical imaging technique that facilitates measuremen...
Purpose: 46 investigate a new approach for more completely accounting for off-resonance affects in t...
Purpose: Determine the correct mathematical phase description for balanced steady-state free precess...
Multi-parametric quantitative MRI enables simultaneous measurement of MR parameters and offers the p...
Quantitative MRI methods that estimate multiple physical parameters simultaneously often require the...
PURPOSE: In this work we demonstrate how sequence parameter settings influence the accuracy and prec...
Purpose: To demonstrate feasibility of transceive phase mapping with the PLANET method and its appli...
PURPOSE: The PLANET method was designed to simultaneously reconstruct maps of T1 and T2 , the off-re...
Purpose: To demonstrate the feasibility of a novel, ellipse fitting approach, named PLANET, for simu...
Purpose/Introduction: Quantitative MR parameter mapping has been demonstrated to allow for improved ...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Multi-Parameter Mapping (MPM) is a comprehensive quantitative neuroimaging protocol that enables est...
PURPOSE: Quantitative MRI applications, such as mapping the T1 time of tissue, puts high demands on ...
Magnetic Resonance Imaging (MRI) is an important diagnostic tool for imaging soft tissue without the...
Purpose: To introduce phase-based conductivity mapping from a configuration space analysis.M...
Magnetic Resonance Imaging (MRI) is a flexible medical imaging technique that facilitates measuremen...
Purpose: 46 investigate a new approach for more completely accounting for off-resonance affects in t...
Purpose: Determine the correct mathematical phase description for balanced steady-state free precess...
Multi-parametric quantitative MRI enables simultaneous measurement of MR parameters and offers the p...
Quantitative MRI methods that estimate multiple physical parameters simultaneously often require the...