coordinated activity of ventral tegmental neurons adapts to appetitive and aversive learning腹侧被盖神经元的协调活动适应欲望和厌恶学习.pdfVIP

coordinated activity of ventral tegmental neurons adapts to appetitive and aversive learning腹侧被盖神经元的协调活动适应欲望和厌恶学习.pdf

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coordinated activity of ventral tegmental neurons adapts to appetitive and aversive learning腹侧被盖神经元的协调活动适应欲望和厌恶学习

Coordinated Activity of Ventral Tegmental Neurons Adapts to Appetitive and Aversive Learning Yunbok Kim, Jesse Wood, Bita Moghaddam* Department of Neuroscience, University of Pittsburgh, Pittsburgh, Pennsylvania, United States America Abstract Our understanding of how value-related information is encoded in the ventral tegmental area (VTA) is based mainly on the responses of individual putative dopamine neurons. In contrast to cortical areas, the nature of coordinated interactions between groups of VTA neurons during motivated behavior is largely unknown. These interactions can strongly affect information processing, highlighting the importance of investigating network level activity. We recorded the activity of multiple single units and local field potentials (LFP) in the VTA during a task in which rats learned to associate novel stimuli with different outcomes. We found that coordinated activity of VTA units with either putative dopamine or GABA waveforms was influenced differently by rewarding versus aversive outcomes. Specifically, after learning, stimuli paired with a rewarding outcome increased the correlation in activity levels between unit pairs whereas stimuli paired with an aversive outcome decreased the correlation. Paired single unit responses also became more redundant after learning. These response patterns flexibly tracked the reversal of contingencies, suggesting that learning is associated with changing correlations and enhanced functional connectivity between VTA neurons. Analysis of LFP recorded simultaneously with unit activity showed an increase in the power of theta oscillations when stimuli predicted reward but not an aversive outcome. With learning, a higher proportion of putative GABA units were phase locked to

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