Structural brain networks can be constructed at a macroscopic scale using diffusion magnetic resonance imaging (dMRI) and whole-brain tractography. Under this approach, grey matter regions, such as Brodmann areas, form the nodes of a network and tractography is used to construct a set of white matter fibre tracts which form the connections. Graph-theoretic measures may then be used to characterise patterns of connectivity. In this study, we measured the test-retest properties of such networks by varying several factors affecting network construction using ten healthy volunteers who underwent a dMRI protocol at 1.5 T on two separate occasions. High resolution T1-weighted brains were parcellated into regions-of-interest and network co...
The global structural connectivity of the brain, the human connectome, is now accessible at millimet...
Structural brain networks derived from diffusion magnetic resonance imaging data have been used exte...
The methodological development in the mapping of the brain structural connectome from diffusion magn...
Structural brain networks constructed from diffusion MRI (dMRI) and tractography have been demonstra...
Understanding the large-scale structural network formed by neurons is a major challenge in system ne...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Diffusion MRI‐based tractography is the most commonly‐used technique when inferring the structural b...
Structural brain networks may be reconstructed from diffusion MRI tractography data and have great p...
Models of whole-brain connectivity are valuable for understanding neurological function. This thesis...
In this thesis data acquired using diffusion-weighted imaging were analysed to study the anatomical ...
Diffusion MRI can be used to study the structural connectivity within the brain. Brain connectivity ...
Diffusion magnetic resonance imaging (dMRI) allows us to noninvasively investigate the microstructur...
The human brain is connected via a vastly complex network of white matter fiber pathways. However, t...
In order to better understand the high complexity of the brain, the detailed study of its individual...
© 2013 Dr. Robert Elton SmithDiffusion Magnetic Resonance Imaging exploits the random, thermally-dri...
The global structural connectivity of the brain, the human connectome, is now accessible at millimet...
Structural brain networks derived from diffusion magnetic resonance imaging data have been used exte...
The methodological development in the mapping of the brain structural connectome from diffusion magn...
Structural brain networks constructed from diffusion MRI (dMRI) and tractography have been demonstra...
Understanding the large-scale structural network formed by neurons is a major challenge in system ne...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Diffusion MRI‐based tractography is the most commonly‐used technique when inferring the structural b...
Structural brain networks may be reconstructed from diffusion MRI tractography data and have great p...
Models of whole-brain connectivity are valuable for understanding neurological function. This thesis...
In this thesis data acquired using diffusion-weighted imaging were analysed to study the anatomical ...
Diffusion MRI can be used to study the structural connectivity within the brain. Brain connectivity ...
Diffusion magnetic resonance imaging (dMRI) allows us to noninvasively investigate the microstructur...
The human brain is connected via a vastly complex network of white matter fiber pathways. However, t...
In order to better understand the high complexity of the brain, the detailed study of its individual...
© 2013 Dr. Robert Elton SmithDiffusion Magnetic Resonance Imaging exploits the random, thermally-dri...
The global structural connectivity of the brain, the human connectome, is now accessible at millimet...
Structural brain networks derived from diffusion magnetic resonance imaging data have been used exte...
The methodological development in the mapping of the brain structural connectome from diffusion magn...