Back

Stimulus dependent modulation of perceptual filling-in is predicted by the properties of early visual cortex

Razafindrahaba, A.; Koiso, K.; van de Ven, V.; De Martino, F.; De Weerd, P.; Roberts, M. J.

2026-07-07 neuroscience
10.64898/2026.07.01.730966 bioRxiv
Show abstract

Filling-in occurs during the perceptual disappearance of a blank figure presented on a textured background. Current models of perceptual filling-in are based on a two-stage model where the figure boundary weakens after a period of adaptation, followed by the spreading of the background representation into the region representing the figure. This suggests a competition between figure boundary and background representations whereby filling-in is facilitated by a weaker boundary representation and a stronger background representation. Here, we test this interpretation, by using the oblique effect and surround-modulation suppression, which are functional properties of early visual cortex that modulate the expected strengths of the responses to the background texture and to the figure boundary. In a sample of N=58 participants, we found more filling-in with background textures of cardinal compared to oblique orientations (earlier onset time, with more and longer episodes of filling-in per trial), in line with a known, stronger neuronal response for cardinal than for oblique orientation in early visual cortex. We found more filling-in when the main axis of the rectangular figure was iso-oriented rather than cross-oriented with the background texture (more and longer episodes of filling-in per trial, but no change in onset time), in line with a lower response to oriented stimuli when surrounded by iso-oriented flankers compared to cross-oriented flankers. Overall, our results support the two-stage model and suggest the involvement of early visual cortical areas characterized by the oblique effect and orientation- tuned surround-suppression.

Matching journals

The top 6 journals account for 50% of the predicted probability mass.

1
The Journal of Neuroscience
1025 papers in training set
Top 1%
12.2%
2
Scientific Reports
3612 papers in training set
Top 3%
12.0%
3
Nature Communications
5641 papers in training set
Top 17%
10.6%
4
Journal of Cognitive Neuroscience
135 papers in training set
Top 0.3%
6.5%
5
Vision Research
29 papers in training set
Top 0.1%
5.3%
6
eLife
5828 papers in training set
Top 23%
5.3%
50% of probability mass above
7
Journal of Vision
110 papers in training set
Top 0.3%
4.2%
8
Cerebral Cortex
396 papers in training set
Top 2%
3.9%
9
European Journal of Neuroscience
189 papers in training set
Top 0.9%
3.4%
10
Communications Biology
993 papers in training set
Top 5%
3.3%
11
Cortex
119 papers in training set
Top 0.7%
3.1%
12
eneuro
439 papers in training set
Top 3%
2.7%
13
Journal of Neurophysiology
302 papers in training set
Top 2%
2.3%
14
NeuroImage
903 papers in training set
Top 4%
2.3%
15
PLOS Biology
486 papers in training set
Top 4%
2.0%
16
Cell Reports
1498 papers in training set
Top 18%
1.8%
17
PLOS ONE
5266 papers in training set
Top 47%
1.8%
18
Proceedings of the National Academy of Sciences
2444 papers in training set
Top 31%
1.4%
19
Progress in Neurobiology
47 papers in training set
Top 0.5%
1.3%
20
PLOS Computational Biology
1863 papers in training set
Top 19%
1.0%
21
iScience
1154 papers in training set
Top 31%
1.0%
22
Brain Structure and Function
93 papers in training set
Top 1%
1.0%
23
Neuropsychologia
85 papers in training set
Top 1%
0.8%
24
Imaging Neuroscience
282 papers in training set
Top 4%
0.8%
25
Psychological Science
18 papers in training set
Top 0.4%
0.8%
26
Current Research in Neurobiology
16 papers in training set
Top 0.2%
0.8%
27
Neuroscience
97 papers in training set
Top 2%
0.8%
28
Psychophysiology
77 papers in training set
Top 2%
0.6%
29
Journal of Experimental Psychology: Human Perception and Performance
13 papers in training set
Top 0.2%
0.6%