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Emergent behaviour and neural dynamics in artificial agents tracking odour plumes

Computer Science

Emergent behaviour and neural dynamics in artificial agents tracking odour plumes

S. H. Singh, F. V. Breugel, et al.

This cutting-edge research uses artificial recurrent neural networks trained with deep reinforcement learning to simulate insect-like odour plume tracking. Conducted by Satpreet H. Singh, Floris van Breugel, Rajesh P. N. Rao, and Bingni W. Brunton, the study uncovers how agents successfully navigate dynamic, turbulent environments to locate odour sources, mimicking real insect behaviour and shedding light on neural dynamics and memory in scent tracking.... show more
Abstract
Tracking an odour plume to locate its source under variable wind and plume statistics is a complex task. Flying insects routinely accomplish such tracking, often over long distances, in pursuit of food or mates. Several aspects of this remarkable behaviour and its underlying neural circuitry have been studied experimentally. Here we take a complementary in silico approach to develop an integrated understanding of their behaviour and neural computations. Specifically, we train artificial recurrent neural network agents using deep reinforcement learning to locate the source of simulated odour plumes that mimic features of plumes in a turbulent flow. Interestingly, the agents’ emergent behaviours resemble those of flying insects, and the recurrent neural networks learn to compute task-relevant variables with distinct dynamic structures in population activity. Our analyses put forward a testable behavioural hypothesis for tracking plumes in changing wind direction, and we provide key intuitions for memory requirements and neural dynamics in odour plume tracking.
Publisher
Nature Machine Intelligence
Published On
Jan 25, 2023
Authors
Satpreet H. Singh, Floris van Breugel, Rajesh P. N. Rao, Bingni W. Brunton
Tags
recurrent neural networks
deep reinforcement learning
odour plume tracking
insect behaviour
dynamic environments
neural dynamics
memory requirements
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