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Real-time Multi-Contrast 4D MRI using Motion Transfer for Low-Latency Volumetric Motion Tracking on a 1.5T MR-Linac System

Real-time Multi-Contrast 4D MRI using Motion Transfer for Low-Latency Volumetric Motion Tracking on a 1.5T MR-Linac System

MRI relaxometry to measure the oxygen partial pressure and viscosity of the vitreous humour of the aging eye

MRI relaxometry to measure the oxygen partial pressure and viscosity of the vitreous humour of the aging eye

Towards a multi-parametric MRI-based myelin marker for detecting enhanced myelination in the Gli1-/- mouse brain

Towards a multi-parametric MRI-based myelin marker for detecting enhanced myelination in the Gli1-/- mouse brain

FibraVasc: towards ex vivo MRI mapping of cerebral vascular territories, application to the vascularization of deep white matter bundles

FibraVasc: towards ex vivo MRI mapping of cerebral vascular territories, application to the vascularization of deep white matter bundles

Investigations of T1 Anisotropy in ex-vivo White Matter using a Tiltable Coil

Investigations of T1 Anisotropy in ex-vivo White Matter using a Tiltable Coil

In-vivo parcellation of human subcortex by diffusion and anatomical MRI

In-vivo parcellation of human subcortex by diffusion and anatomical MRI

Spectrally Selective On-Resonance Inversion Recovery at 7T for Multiple Component T1 Mapping

Spectrally Selective On-Resonance Inversion Recovery at 7T for Multiple Component T1 Mapping

A Rapid, Whole-brain Quantification of T1 Relaxation Time Using Submillimetre Inversion-recovery EPI at 7T

A Rapid, Whole-brain Quantification of T1 Relaxation Time Using Submillimetre Inversion-recovery EPI at 7T

Simultaneous T1 and T2 relaxometry of the human brain at 7T using Quantitative Transient-state Imaging

Simultaneous T1 and T2 relaxometry of the human brain at 7T using Quantitative Transient-state Imaging

Reproducibility and sensitivity of in vivo human brain R1 map at ultralow field 64 mT

Reproducibility and sensitivity of in vivo human brain R1 map at ultralow field 64 mT

Suppressing blood signal in myocardial T1 mapping at 3T through novel dark-blood adiabatic spin-lock preparations.

Suppressing blood signal in myocardial T1 mapping at 3T through novel dark-blood adiabatic spin-lock preparations.