Mammalian choices: combining fast-but-inaccurate and slow-but-accurate decision-making systems.
Scientific Abstract
Empirical findings suggest that the mammalian brain has two decision-making systems that act at different speeds. We represent the faster system using standard signal detection theory. We represent the slower (but more accurate) cortical system as the integration of sensory evidence over time until a certain level of confidence is reached. We then consider how two such systems should be combined optimally for a range of information linkage mechanisms. We conclude with some performance predictions that will hold if our representation is realistic.
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Mammalian choices: combining fast-but-inaccurate and slow-but-accurate decision-making systems.
Scientific Abstract
Empirical findings suggest that the mammalian brain has two decision-making systems that act at different speeds. We represent the faster system using standard signal detection theory. We represent the slower (but more accurate) cortical system as the integration of sensory evidence over time until a certain level of confidence is reached. We then consider how two such systems should be combined optimally for a range of information linkage mechanisms. We conclude with some performance predictions that will hold if our representation is realistic.
Citation
2008.Proc. Biol. Sci., 275(1649):2353-61.
Free Full Text at Europe PMC
PMC2603220Downloads
Similar content
Preprint
Normative Networks for Source Separation via Local Plasticity and Dendritic Computation
Preprint
On the Infinite Width and Depth Limits of Predictive Coding Networks
Paper
Dithering suppresses half-harmonic neural synchronisation to photic stimulation in humans.
2026. Brain Stimul, 19(3):103111.
Free Full Text at Europe PMC
PMC13328066