Ultra-high field magnetic resonance imaging data obtained using a multi-echo gradient echo sequence has been shown to contain information on tissue microstructure. Quantitative assessment of water fraction, relaxation time and frequency shift using multi-compartment signal modelling may help improve our understanding of diseases and disorders affecting the human brain. In this study, we explored tissue microstructure information by analysing voxel compartment water fraction and frequency shifts derived from 7 T multi-echo gradient recalled echo MRI data. We aimed to test whether the parameters of a three compartment model could distinguish the normal cortex from the cortex affected by focal cortical dysplasia. We compartmentalised normal an...
Diffusion weighted magnetic resonance spectroscopy (DWS) of brain metabolites offers unique access t...
The increased signal-to-noise ratio (SNR) offered by functional Magnetic Resonance Imaging (fMRI) at...
The microscopic structure of neuronal tissue is crucial to brain function, with axon diameter, axona...
Quantitative assessment of tissue microstructure is important in studying human brain diseases and d...
Gradient recalled echo magnetic resonance imaging (GRE-MRI) at ultra-high field holds great promise ...
Magnetic Resonance Imaging allows electromagnetic properties of the brain to be measured in vivo, pr...
Recent developments in ultra high field MRI and receiver coil technology have opened up the possibil...
Recent developments in ultra high field MRI and receiver coil technology have opened up the possibil...
High-resolution magnetic resonance imaging (MRI) may improve the preoperative diagnosis of focal cor...
Diffusion MRI uses the random displacement of water molecules to sensitize the signal to brain micro...
In this thesis, the potential of MRI phase to reveal the magnetic properties of tissue is thoroughly...
Quantitative susceptibility mapping (QSM) is increasingly used to measure variation in tissue compos...
Background: In epilepsy patients with focal cortical dysplasia (FCD) as the epileptogenic focus, glo...
Purpose: Many patients with focal cortical dysplasia (FCD) continue to have seizures after surgical ...
The quantification of brain white matter properties is a key area of application of Magnetic Resonan...
Diffusion weighted magnetic resonance spectroscopy (DWS) of brain metabolites offers unique access t...
The increased signal-to-noise ratio (SNR) offered by functional Magnetic Resonance Imaging (fMRI) at...
The microscopic structure of neuronal tissue is crucial to brain function, with axon diameter, axona...
Quantitative assessment of tissue microstructure is important in studying human brain diseases and d...
Gradient recalled echo magnetic resonance imaging (GRE-MRI) at ultra-high field holds great promise ...
Magnetic Resonance Imaging allows electromagnetic properties of the brain to be measured in vivo, pr...
Recent developments in ultra high field MRI and receiver coil technology have opened up the possibil...
Recent developments in ultra high field MRI and receiver coil technology have opened up the possibil...
High-resolution magnetic resonance imaging (MRI) may improve the preoperative diagnosis of focal cor...
Diffusion MRI uses the random displacement of water molecules to sensitize the signal to brain micro...
In this thesis, the potential of MRI phase to reveal the magnetic properties of tissue is thoroughly...
Quantitative susceptibility mapping (QSM) is increasingly used to measure variation in tissue compos...
Background: In epilepsy patients with focal cortical dysplasia (FCD) as the epileptogenic focus, glo...
Purpose: Many patients with focal cortical dysplasia (FCD) continue to have seizures after surgical ...
The quantification of brain white matter properties is a key area of application of Magnetic Resonan...
Diffusion weighted magnetic resonance spectroscopy (DWS) of brain metabolites offers unique access t...
The increased signal-to-noise ratio (SNR) offered by functional Magnetic Resonance Imaging (fMRI) at...
The microscopic structure of neuronal tissue is crucial to brain function, with axon diameter, axona...