Brain network data—measuring structural interconnections among brain regions of interest—are increasingly collected for multiple individuals. Moreover, recent analyses provide additional information on the brain regions under study. These predictors typically include the three-dimensional anatomical coordinates of the regions, and their membership to hemispheres and lobes. Although recent studies have explored the spatial effects underlying brain networks, there is still a lack of statistical analyses on the net connectivity structure which is not explained by the physical proximity of the brain regions. We answer this question via a predictor-dependent latent space model for replicated brain network data which provides a meaningful represe...
(A) Connectivity matrix from viral tracing data (left); reconstructed connectivity from the power-la...
Over the past decade, a growing number of studies have investigated the relationship between the str...
The white matter architecture of the brain imparts a distinct signature on neuronal coactivation pat...
Brain network data—measuring structural interconnections among brain regions of interest—are increas...
Brain network data—measuring anatomical interconnections among a common set of brain regions—are inc...
Previously we showed that network-based modelling of brain connectivity interacts strongly with the ...
Coordinated brain activity reflects underlying cognitive processes and can be modeled as a network o...
A common goal in biological sciences is to model a complex web of connections using a small number o...
Contains fulltext : 139690.pdf (postprint version ) (Open Access)A fundamental ass...
SummaryRecent advances in neuroscience have engendered interest in large-scale brain networks. Using...
<div><p>A fundamental assumption in neuroscience is that brain function is constrained by its struct...
Brain connectivity is often considered in terms of the communication between functionally distinct b...
Most current computational models of neocortical networks assume a homogeneous and isotropic arrange...
Functional brain networks emerge and dissipate over a primarily static anatomical foundation. The dy...
Most current computational models of neocortical networks assume a homogeneous and isotropic arrange...
(A) Connectivity matrix from viral tracing data (left); reconstructed connectivity from the power-la...
Over the past decade, a growing number of studies have investigated the relationship between the str...
The white matter architecture of the brain imparts a distinct signature on neuronal coactivation pat...
Brain network data—measuring structural interconnections among brain regions of interest—are increas...
Brain network data—measuring anatomical interconnections among a common set of brain regions—are inc...
Previously we showed that network-based modelling of brain connectivity interacts strongly with the ...
Coordinated brain activity reflects underlying cognitive processes and can be modeled as a network o...
A common goal in biological sciences is to model a complex web of connections using a small number o...
Contains fulltext : 139690.pdf (postprint version ) (Open Access)A fundamental ass...
SummaryRecent advances in neuroscience have engendered interest in large-scale brain networks. Using...
<div><p>A fundamental assumption in neuroscience is that brain function is constrained by its struct...
Brain connectivity is often considered in terms of the communication between functionally distinct b...
Most current computational models of neocortical networks assume a homogeneous and isotropic arrange...
Functional brain networks emerge and dissipate over a primarily static anatomical foundation. The dy...
Most current computational models of neocortical networks assume a homogeneous and isotropic arrange...
(A) Connectivity matrix from viral tracing data (left); reconstructed connectivity from the power-la...
Over the past decade, a growing number of studies have investigated the relationship between the str...
The white matter architecture of the brain imparts a distinct signature on neuronal coactivation pat...