Steinbeck, Fabian and Nowotny, Thomas and Philippides, Andy and Graham, Paul (2022) Production of adaptive movement patterns via an insect inspired spiking neural network central pattern generator. Frontiers in Computational Neuroscience, 16. ISSN 1662-5188
10.3389/fncom.2022.948973/full - Published Version
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Abstract
Navigation in ever-changing environments requires effective motor behaviors. Many insects have developed adaptive movement patterns which increase their success in achieving navigational goals. A conserved brain area in the insect brain, the Lateral Accessory Lobe, is involved in generating small scale search movements which increase the efficacy of sensory sampling. When the reliability of an essential navigational stimulus is low, searching movements are initiated whereas if the stimulus reliability is high, a targeted steering response is elicited. Thus, the network mediates an adaptive switching between motor patterns. We developed Spiking Neural Network models to explore how an insect inspired architecture could generate adaptive movements in relation to changing sensory inputs. The models are able to generate a variety of adaptive movement patterns, the majority of which are of the zig-zagging kind, as seen in a variety of insects. Furthermore, these networks are robust to noise. Because a large spread of network parameters lead to the correct movement dynamics, we conclude that the investigated network architecture is inherently well-suited to generating adaptive movement patterns.
Item Type: | Article |
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Subjects: | Impact Archive > Medical Science |
Depositing User: | Managing Editor |
Date Deposited: | 01 Apr 2023 04:45 |
Last Modified: | 13 Mar 2024 04:00 |
URI: | http://research.sdpublishers.net/id/eprint/1928 |