International audienceUnderstanding how cognitive functions emerge from brain structure depends on quantifying how discrete regions are integrated within the broader cortical landscape. Recent work established that macroscale brain organization and function can be described in a compact manner with multivariate machine learning approaches that identify manifolds often described as cortical gradients. By quantifying topographic principles of macroscale organization, cortical gradients lend an analytical framework to study structural and functional brain organization across species, throughout development and aging, and its perturbations in disease. Here, we present BrainSpace, a Python/Matlab toolbox for (i) the identification of gradients, ...
Multimodal neuroimaging grants a powerful window into the structure and function of the human brain ...
<div><p>The neural patterns recorded during a neuroscientific experiment reflect complex interaction...
Thesis (Ph.D.)--University of Washington, 2022The human brain is characterized by a hierarchical sys...
International audienceUnderstanding how cognitive functions emerge from brain structure depends on q...
Analysis and interpretation of neuroimaging datasets has become a multidisciplinary endeavor, relyin...
Large-archives of neuroimaging data present many opportunities for re-analysis and mining that can l...
Large-archives of neuroimaging data present many opportunities for re-analysis and mining that can ...
Gradient-based approaches to brain function have recently unmasked fundamental properties of brain o...
<div><p>Human brain anatomy and function display a combination of modular and hierarchical organizat...
The mammalian brain is a highly complex organ, with a broad range of regional microscale cellular mo...
Gradient-based approaches to brain function have recently unmasked fundamental properties of brain o...
Construction of comprehensive and detailed brain regions neuroanatomical connections matrices (macro...
There has been an increasing interest in examining organisational principles of the cerebral cortex ...
The human brain is a highly complex system, with a large variety of microscale cellular morphologies...
Summary: The topological organization of the cerebral cortex provides hierarchical axes, namely grad...
Multimodal neuroimaging grants a powerful window into the structure and function of the human brain ...
<div><p>The neural patterns recorded during a neuroscientific experiment reflect complex interaction...
Thesis (Ph.D.)--University of Washington, 2022The human brain is characterized by a hierarchical sys...
International audienceUnderstanding how cognitive functions emerge from brain structure depends on q...
Analysis and interpretation of neuroimaging datasets has become a multidisciplinary endeavor, relyin...
Large-archives of neuroimaging data present many opportunities for re-analysis and mining that can l...
Large-archives of neuroimaging data present many opportunities for re-analysis and mining that can ...
Gradient-based approaches to brain function have recently unmasked fundamental properties of brain o...
<div><p>Human brain anatomy and function display a combination of modular and hierarchical organizat...
The mammalian brain is a highly complex organ, with a broad range of regional microscale cellular mo...
Gradient-based approaches to brain function have recently unmasked fundamental properties of brain o...
Construction of comprehensive and detailed brain regions neuroanatomical connections matrices (macro...
There has been an increasing interest in examining organisational principles of the cerebral cortex ...
The human brain is a highly complex system, with a large variety of microscale cellular morphologies...
Summary: The topological organization of the cerebral cortex provides hierarchical axes, namely grad...
Multimodal neuroimaging grants a powerful window into the structure and function of the human brain ...
<div><p>The neural patterns recorded during a neuroscientific experiment reflect complex interaction...
Thesis (Ph.D.)--University of Washington, 2022The human brain is characterized by a hierarchical sys...