Advances in understanding the structural connectomes of human brain require improved approaches for the construction, comparison and integration of high-dimensional whole-brain tractography data from a large number of individuals. This article develops a population-based structural connectome (PSC) mapping framework to address these challenges. PSC simultaneously characterizes a large number of white matter bundles within and across different subjects by registering different subjects’ brains based on coarse cortical parcellations, compressing the bundles of each connection, and extracting novel connection weights. A robust tractography algorithm and streamline post-processing techniques, including dilation of gray matter regions, streamlin...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Models of whole-brain connectivity are valuable for understanding neurological function. This thesis...
Advances in understanding the structural connectomes of human brain require improved approaches for ...
The human brain is a complex system that can be efficiently represented as a network of structural c...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
We mapped functional and structural brain networks for more than 40,000 UK Biobank participants. Str...
Brain connectivity is one of the main objects of brain research reflecting the interaction between n...
© 2020 Tabinda SarwarMapping the human connectome is a major goal in neuroscience, where connectome ...
Much like genomics, brain connectomics has rapidly become a core component of most national brain pr...
This repository complements the paper submitted to Scientific Data named A multi-scale probabilistic...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Models of whole-brain connectivity are valuable for understanding neurological function. This thesis...
Advances in understanding the structural connectomes of human brain require improved approaches for ...
The human brain is a complex system that can be efficiently represented as a network of structural c...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
International audienceThe present study describes extraction of high-resolution structural connectom...
We mapped functional and structural brain networks for more than 40,000 UK Biobank participants. Str...
Brain connectivity is one of the main objects of brain research reflecting the interaction between n...
© 2020 Tabinda SarwarMapping the human connectome is a major goal in neuroscience, where connectome ...
Much like genomics, brain connectomics has rapidly become a core component of most national brain pr...
This repository complements the paper submitted to Scientific Data named A multi-scale probabilistic...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Models of whole-brain connectivity are valuable for understanding neurological function. This thesis...