Imprecise neural computations as a source of adaptive behaviour in volatile environments
- PMID: 33168951
- DOI: 10.1038/s41562-020-00971-z
Imprecise neural computations as a source of adaptive behaviour in volatile environments
Abstract
In everyday life, humans face environments that feature uncertain and volatile or changing situations. Efficient adaptive behaviour must take into account uncertainty and volatility. Previous models of adaptive behaviour involve inferences about volatility that rely on complex and often intractable computations. Because such computations are presumably implausible biologically, it is unclear how humans develop efficient adaptive behaviours in such environments. Here, we demonstrate a counterintuitive result: simple, low-level inferences confined to uncertainty can produce near-optimal adaptive behaviour, regardless of the environmental volatility, assuming imprecisions in computation that conform to the psychophysical Weber law. We further show empirically that this Weber-imprecision model explains human behaviour in volatile environments better than optimal adaptive models that rely on high-level inferences about volatility, even when considering biologically plausible approximations of such models, as well as non-inferential models like adaptive reinforcement learning.
Comment in
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Imprecise learning and uncertainty.Nat Hum Behav. 2021 Jan;5(1):7-8. doi: 10.1038/s41562-020-00992-8. Nat Hum Behav. 2021. PMID: 33168952 No abstract available.
References
-
- Behrens, T. E., Woolrich, M. W., Walton, M. E. & Rushworth, M. F. Learning the value of information in an uncertain world. Nat. Neurosci. 10, 1214–1221 (2007). - DOI
-
- Boorman, E. D., Behrens, T. E., Woolrich, M. W. & Rushworth, M. F. How green is the grass on the other side? Frontopolar cortex and the evidence in favor of alternative courses of action. Neuron 62, 733–743 (2009). - DOI
-
- Gershman, S. J., Blei, D. M. & Niv, Y. Context learning, and extinction. Psychological Rev. 117, 1997–1209 (2010). - DOI
-
- Tenenbaum, J. B., Kemp, C., Griffiths, T. L. & Goodman, N. D. How to grow a mind: statistics, structure, and abstraction. Science 331, 1279–1285 (2011). - DOI
-
- Collins, A. G. & Koechlin, E. Reasoning, learning, and creativity: frontal lobe function and human decision-making. PLoS Biol. 10, e1001293 (2012). - DOI
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