Preserved brain hierarchy supports residual vision without awareness after visual cortex damage
Orsenigo, D.; Luppi, A. I.; Diano, M.; Ciorli, T.; Borriero, A.; Willis, H. E.; Petri, G.; Bridge, H.; Tamietto, M.
Show abstract
Damage to the primary visual cortex causes loss of conscious vision, yet some patients retain the ability to respond to stimuli despite reporting no visual experience. Why similar lesions produce such different behavioral phenotypes remains unclear. While research to date has focused primarily on spared pathways that bypass V1, here we asked whether these divergent outcomes are also linked to the brain's intrinsic functional architecture. In the largest resting-state fMRI cohort of patients with unilateral V1 damage reported to date, we quantified information sharing between regions across cortical and subcortical parcels in blindsight-positive and blindsight-negative patients, as well as in age-matched healthy controls. Despite comparable lesions, the two patient groups displayed distinct hierarchical patterns on the cortex: B+ patients preserved a sensory-to-association organization as in healthy controls, whereas B- patients exhibited a marked flattening of this hierarchy. The effect was driven by abnormally low shared-information coupling within unimodal cortices and scaled continuously with single-subject behavioral blind-field detection performance. A thalamic region consistent with the pulvinar, linking the contralesional visual cortex and the frontal eye field, discriminated B+ from B- patients. These findings highlight the system-level consequences of V1 damage supporting blindsight, suggesting that the unimodal-transmodal axis might track not only global states of consciousness, but also whether sensory information can guide behavior without awareness.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Differential spatial computations in ventral and lateral face-selective regions are scaffolded by structural connections 94%
- Plasticity versus stability across the human cortical visual connectome 94%
- Neocortical layer 4 in adult mouse differs in major cell types and circuit organization between primary sensory areas 94%
Similar papers in this journal
- Mesoscale cortical dynamics reflect the interaction of sensory evidence and temporal expectation during perceptual decision-making 94%
- Inhibitory and excitatory populations in parietal cortex are equally selective for decision outcome in both novices and experts 94%
- Layer 5 circuits in V1 differentially control visuomotor behavior 93%
Similar papers in this journal
Similar papers in this journal
- Attentional amplification of neural codes for number independent of other quantities along the dorsal visual stream 93%
- Tracing the development and lifespan change of population-level structural asymmetry in the cerebral cortex 93%
- Invariant Representation of Physical Stability in the Human Brain 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.