Task-based functional magnetic resonance imaging (fMRI) has been successfully employed to obtain somatotopic maps of the human sensorimotor cortex. Here, we showed through direct comparison that a similar functional map can be obtained, independently of a task, by performing a connectivity-based parcellation of the sensorimotor cortex based on resting-state fMRI. Cortex corresponding to two adjacent Brodmann areas (BA 3 and BA 4) was selected as the sensorimotor area. Parcellation was obtained along a medial–lateral axis, which was confirmed to be somatotopic (corresponding roughly to an upper, middle and lower limb, respectively) by comparing it with maps obtained using motoric task-based fMRI in the same participants. Interestingly, the r...
We introduce a novel multimodal scheme for primary sensorimotor hand area (SM1ha) mapping integratin...
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...
Task-based functional magnetic resonance imaging (fMRI) has been successfully employed to obtain som...
The sensorimotor cortex is a brain region comprising the primary motor cortex (MI) and the primary s...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
This work is based on experiments and simulations for the purpose of mapping the human somatosensory...
This work is based on experiments and simulations for the purpose of mapping the human somatosensory...
This chapter focuses on a key characteristic of the somatosensory as well as the motor system, that ...
Functional magnetic resonance imaging (fMRI) is a widely used tool for studying brain function in vi...
To assess the degree of fine-scale somatotopy within the hand area of the human primary motor cortex...
To assess the degree of fine-scale somatotopy within the hand area of the human primary motor cortex...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
We introduce a novel multimodal scheme for primary sensorimotor hand area (SM1ha) mapping integratin...
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...
Task-based functional magnetic resonance imaging (fMRI) has been successfully employed to obtain som...
The sensorimotor cortex is a brain region comprising the primary motor cortex (MI) and the primary s...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
Noninvasive parcellation of the human cerebral cortex is all important goal for understanding and ex...
This work is based on experiments and simulations for the purpose of mapping the human somatosensory...
This work is based on experiments and simulations for the purpose of mapping the human somatosensory...
This chapter focuses on a key characteristic of the somatosensory as well as the motor system, that ...
Functional magnetic resonance imaging (fMRI) is a widely used tool for studying brain function in vi...
To assess the degree of fine-scale somatotopy within the hand area of the human primary motor cortex...
To assess the degree of fine-scale somatotopy within the hand area of the human primary motor cortex...
AbstractNoninvasive parcellation of the human cerebral cortex is an important goal for understanding...
We introduce a novel multimodal scheme for primary sensorimotor hand area (SM1ha) mapping integratin...
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...