Abstract:
:The spinal neural networks of larval zebrafish (Danio rerio) generate a variety of movements such as escape, struggling, and swimming. Various mechanisms at the neural and network levels have been proposed to account for switches between these behaviors. However, there are currently no detailed demonstrations of such mechanisms. This makes determining which mechanisms are plausible extremely difficult. In this paper, we propose a detailed biologically plausible model of the interactions between the swimming and escape networks in the larval zebrafish, while taking into account anatomical and physiological evidence. We show that the results of our neural model generate the expected behavior when used to control a hydrodynamic model of carangiform locomotion. As a result, the model presented here is a clear demonstration of a plausible mechanism by which these distinct behaviors can be controlled. Interestingly, the networks are anatomically overlapping, despite clear differences in behavioral function and physiology.
journal_name
Biol Cybernjournal_title
Biological cyberneticsauthors
Kuo PD,Eliasmith Cdoi
10.1007/s00422-005-0576-9keywords:
subject
Has Abstractpub_date
2005-09-01 00:00:00pages
178-87issue
3eissn
0340-1200issn
1432-0770journal_volume
93pub_type
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