The human brain mechanisms of afterimages: From networks to cortical layers
Kronemer, S. I.; Akin, B.; Holness, M.; Morgan, A. T.; Huber, L.; Taylor, P. A.; Gonzalez-Castillo, J.; Handwerker, D. A.; Bandettini, P. A.
Show abstract
Afterimages are common visual illusions that have long attracted scientific interest, yet their neural mechanisms remain little understood. We used high-spatial-resolution fMRI to investigate human whole brain and cortical layer activity in primary visual cortex (V1) linked with afterimages and perceptually matching animated images - stimuli designed to imitate the appearance of afterimages. Both afterimages and perceptually matched images engaged overlapping, widespread brain activity, particularly in visual sensory regions that follow the contralateral circuitry of the primary visual pathway. However, afterimages elicited weaker fMRI signals across many subcortical and cortical areas compared to images, except in salience network regions, where activity was enhanced for afterimages. Cortical layer-specific analyses in V1 revealed afterimages selectively engaged deep cortical layers, while images activated middle and superficial layers. In addition, we found that baseline eye measures and fMRI signals in arousal and visual networks differed depending on whether afterimages were perceived or not perceived. We argue that these results challenge the prevailing framing on the neurophysiological origins of afterimages as arising from either retinal or central neural processes. As with image perception, typical afterimages emerge by the interaction between retinal activity and central neural processing.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Faster than thought: Detecting sub-second activation sequences with sequential fMRI pattern analysis 97%
- Ultra-wide angle neuroimaging: insights into immersive scene representation 96%
- Differential spatial computations in ventral and lateral face-selective regions are scaffolded by structural connections 96%
Similar papers in this journal
- A generalized cortical activity pattern at internally-generated mental context boundaries during unguided narrative recall 96%
- Differential destinations, dynamics, and functions of high- and low-order features in the feedback signal during object processing 96%
- Social navigation: distance and grid-like codes support navigation of abstract social space in the human brain 95%
Similar papers in this journal
- Brief encounters with real objects modulate medial parietal but not occipitotemporal cortex 97%
- Spatial processing of limbs reveals the center-periphery bias in high level visual cortex follows a nonlinear topography 96%
- Dissociable contributions of the medial parietal cortex to recognition memory 95%
"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.