The role of neural tuning in quantity perception

Publication date

2022-01-01

Authors

Tsouli, AndromachiISNI 0000000492816540
Harvey, BenISNI 0000000419439662
Hofstetter, Shir
Cai, Yuxuan
van der Smagt, Maarten J.ORCID 0000-0003-2772-6429ISNI 0000000390366905
Te Pas, S.F.ISNI 0000000392260792
Dumoulin, SergeISNI 0000000419438328

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Perception of quantities, such as numerosity, timing, and size, is essential for behavior and cognition. Accumulating evidence demonstrates neurons processing quantities are tuned, that is, have a preferred quantity amount, not only for numerosity, but also other quantity dimensions and sensory modalities. We argue that quantity-tuned neurons are fundamental to understanding quantity perception. We illustrate how the properties of quantity-tuned neurons can underlie a range of perceptual phenomena. Furthermore, quantity-tuned neurons are organized in distinct but overlapping topographic maps. We suggest that this overlap in tuning provides the neural basis for perceptual interactions between different quantities, without the need for a common neural representational code.

Keywords

brain and behavior, numerosity, receptive fields, subitizing, topographic maps, Weber law, Taverne, Neuropsychology and Physiological Psychology, Experimental and Cognitive Psychology, Cognitive Neuroscience

Citation

Tsouli, A, Harvey, B M, Hofstetter, S, Cai, Y, van der Smagt, M J, te Pas, S F & Dumoulin, S O 2022, 'The role of neural tuning in quantity perception', Trends in Cognitive Sciences, vol. 26, no. 1, pp. 11-24. https://doi.org/10.1016/j.tics.2021.10.004