Dopamine builds and reveals reward-associated latent behavioral attractors
Jérémie Naudé1,2, Matthieu X B Sarazin3, Sarah Mondoloni4
1Sorbonne Université, Inserm, CNRS, Neuroscience Paris Seine; Institut de Biologie Paris Seine (NPS - IBPS), Paris, France. jeremie.naude@igf.cnrs.fr.
Abstract:
Phasic variations in dopamine levels are interpreted as a teaching signal reinforcing rewarded behaviors. However, behavior also depends on the motivational, neuromodulatory effect of phasic dopamine. In this study, we reveal a neurodynamical principle that unifies these roles in a recurrent network-based decision architecture embodied through an action-perception loop with the task space, the MAGNet model. Dopamine optogenetic conditioning in mice was accounted for by an embodied network model in which attractors encode internal goals. Dopamine-dependent synaptic plasticity created "latent" attractors, to which dynamics converged, but only locally. Attractor basins were widened by dopamine-modulated synaptic excitability, rendering goals accessible globally, i.e. from distal positions. We validated these predictions optogenetically in mice: dopamine neuromodulation suddenly and specifically attracted animals toward rewarded locations, without off-target motor effects. We thus propose that motivational dopamine reveals dopamine-built attractors representing potential goals in a behavioral landscape.
Related Concept Videos
Purposive Learning
Instinctive Drift
Behaviorism
The core premise of behaviorism is its focus on observable behavior rather than internal thoughts or feelings. This approach argues that true scientific...
Drug Abuse and Addiction: Pharmacological Phenomena
Law of Effect
Edward Thorndike's foundational work involved studying learning in animals, particularly using puzzle...
Incentive Theory: Pull Theory of Motivation
The theory differentiates between...


