Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and efferent connections terminate in different cortical layers. However, it is unknown to what level human fMRI is specific and sensitive enough to reveal directional functional activity across layers. To answer this question, we developed acquisition and analysis methods for blood-oxygen-level-dependent (BOLD) and cerebral-blood-volume (CBV)-based laminar fMRI and used these to discriminate four different tasks in the human motor cortex (M1). In agreement with anatomical data from animal studies, we found evidence for somatosensory and premotor input in superficial layers of M1 and for cortico-spinal motor output in deep layers. Laminar resting-...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
With recent advances in ultra-high field MRI contrast optimizations and acquisition strategies, it h...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
The mesoscopic organization of the human neocortex is of great interest for cognitive neuroscience. ...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Layer-dependent fMRI allows measurements of information flow in cortical circuits, as afferent and e...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
With recent advances in ultra-high field MRI contrast optimizations and acquisition strategies, it h...
Cerebral blood volume (CBV) has been shown to be a robust and important physiological parameter for ...
The mesoscopic organization of the human neocortex is of great interest for cognitive neuroscience. ...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...
Cortical layer-dependent high (sub-millimeter) resolution functional magnetic resonance imaging (fMR...