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Platt, M. L.

Publications and source records attributed to Platt, M. L..

2 recordsLinked to original sources

Neuronal activity in the posterior cingulate cortex signals environmental information and predicts behavioral variability during routine foraging

Animals engage in routine behavior in order to efficiently navigate their environments. This routine behavior may be influenced by the state of the environment, such as the location and size of rewards. The neural circuits tracking environmental information and how that information impacts decisions to diverge from routines remains unexplored. To investigate the representation of environmental information during routine foraging, we recorded the activity of single neurons in posterior cingulate cortex (PCC) in monkeys searching through an array of targets in which the location of rewards was unknown. Outside the laboratory, people and animals solve such traveling salesman problems by following routine traplines that connect nearest-neighbor locations. In our task, monkeys also deployed traplining routines, but as the environment became better known, they diverged from them despite the reduction in foraging efficiency. While foraging, PCC neurons tracked environmental information but not reward and predicted variability in the pattern of choices. Together, these findings suggest that PCC mediates the influence of information on variability in choice behavior.

neuroscience

Neuronal Mechanisms of Strategic Cooperation

Here we demonstrate that during strategic gameplay monkeys behave as if they reason recursively about other individuals beliefs and desires in order to predict their choices and to guide their own actions, especially the decision to cooperate. Neurons in mid superior temporal sulcus (mSTS), the putative homolog of the human temporo-parietal junction (TPJ), signal abstract non-perceptual social information, including payoffs, intentions, and outcomes, and further distinguish between social and nonsocial agents while monkeys play the game. We demonstrate for the first time that a subpopulation of these neurons selectively signals cooperatively obtained rewards. Neurons in the anterior cingulate gyrus (ACCg), an area implicated in vicarious reinforcement and empathy, do not distinguish agency and as a population carry less information about strategic variables. These findings suggest the capacity to mentalize has deep roots in the strategic social behavior of primates, and endorse mSTS as the evolutionary wellspring of these functions.

neuroscience