Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both sighted and early blind individuals, indicating a supramodal organization. Visual experience, however, leads to a segregation of hMT+ into a more anterior subregion, involved in the supramodal representation of motion, and a posterior subregion that processes visual motion only. In contrast, in congenitally blind subjects tactile motion activates the full extent of hMT+. Here, we used fMRI to investigate brain areas functionally connected with the two hMT+ subregions (seeds) during visual and tactile motion in sighted and blind individuals. A common functional connectivity network for motion processing, including bilateral ventral and dorsal ex...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...
Previous studies in early blind individuals posited a possible role of parieto-occipital connections...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
During the research program of my Doctorate Course, we investigated whether the visual hMT+ complex ...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT1 cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT1 cortex plays a role in supramodal representation of sensory ...
The research presented in this thesis investigates the cross-modal representation of motion informat...
SummaryThe middle temporal complex (MT/MST) is a brain region specialized for the perception of moti...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
The motion-sensitive middle temporal cortex (hMT+ complex) responds also to non-visual motion stimul...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...
Previous studies in early blind individuals posited a possible role of parieto-occipital connections...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
Human middle temporal complex (hMT+) responds also to the perception of non-visual motion in both si...
During the research program of my Doctorate Course, we investigated whether the visual hMT+ complex ...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT1 cortex plays a role in supramodal representation of sensory ...
We investigated whether the visual hMT1 cortex plays a role in supramodal representation of sensory ...
The research presented in this thesis investigates the cross-modal representation of motion informat...
SummaryThe middle temporal complex (MT/MST) is a brain region specialized for the perception of moti...
We investigated whether the visual hMT+ cortex plays a role in supramodal representation of sensory ...
The motion-sensitive middle temporal cortex (hMT+ complex) responds also to non-visual motion stimul...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...
Previous studies in early blind individuals posited a possible role of parieto-occipital connections...
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural mo...