Aligned representation of visual and tactile motion directions in hMT+/V5 and fronto-parietal regions.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41862471.
- Also identified by DOI 10.1038/s41467-026-70537-6 and PMC identifier 13004924.
- Licence recorded as CC BY-NC-ND.
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Abstract
Moving events on the skin can be perceived through vision and touch. How does the brain create a unified multisensory representation of motion directions initially acquired in different coordinate systems? Using functional magnetic resonance imaging, we demonstrate that individually and functionally defined hMT+/V5 shows univariate preference for both visual and tactile motion and encodes motion directions across hand postures. Unlike somatosensory regions, information about tactile directions is enhanced in right hMT+/V5 when mapped using an external rather than a somatotopic frame of reference. Crossmodal decoding reveals alignment between tactile and visual motion directions in the right hMT+/V5 (both in MT and MST) only when tactile motion is defined in external space. A whole-brain searchlight analysis extends this aligned representation to parietal and frontal regions. Our findings reveal a network involving right hMT+/V5 and fronto-parietal regions that encodes motion directions in vision and touch using a common external frame of reference.
Medical subject headings
- Motion Perception
- Parietal Lobe
- Touch Perception
- Frontal Lobe
- Visual Cortex
- Touch
- Visual Perception