Resting-state fMRI is commonly used to derive brain parcellations, which are widely used for dimensionality reduction and interpreting human neuroscience studies. We previously developed a model that integrates local and global approaches for estimating areal-level cortical parcellations. The resulting local-global parcellations are often referred to as the Schaefer parcellations. However, the lack of homotopic correspondence between left and right Schaefer parcels has limited their use for brain lateralization studies. Here, we extend our previous model to derive homotopic areal-level parcellations. Using resting-fMRI and task-fMRI across diverse scanners, acquisition protocols, preprocessing and demographics, we show that the resulting ho...
Network analysis of resting-state fMRI (rsfMRI) has been widely utilized to investigate the function...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
Resting-state fMRI is commonly used to derive brain parcellations, which are widely used for dimensi...
Resting-state fMRI is commonly used to derive brain parcellations, which are widely used for dimensi...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
We propose a novel computational strategy to partition the cerebral cortex into disjoint, spatially ...
We propose a novel computational strategy to partition the cerebral cortex into disjoint, spatially ...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
The sensorimotor cortex is a brain region comprising the primary motor cortex (MI) and the primary s...
Network analysis of resting-state fMRI (rsfMRI) has been widely utilized to investigate the function...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...
Resting-state fMRI is commonly used to derive brain parcellations, which are widely used for dimensi...
Resting-state fMRI is commonly used to derive brain parcellations, which are widely used for dimensi...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
A central goal in systems neuroscience is the parcellation of the cerebral cortex into discrete neur...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
We propose a novel computational strategy to partition the cerebral cortex into disjoint, spatially ...
We propose a novel computational strategy to partition the cerebral cortex into disjoint, spatially ...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
Human and nonhuman primates exhibit flexible behavior. Functional, anatomical, and lesion studies in...
The sensorimotor cortex is a brain region comprising the primary motor cortex (MI) and the primary s...
Network analysis of resting-state fMRI (rsfMRI) has been widely utilized to investigate the function...
Parcellation of the human cortex has important implications in neuroscience. Parcellation is often a...
Understanding the amazingly complex human cerebral cortex requires a map (or parcellation) of its ma...