Uncovering multiscale structure in the variability of larval zebrafish navigation

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Hauptverfasser: Sridhar, Gautam, Vergassola, Massimo, Marques, Joao C., Orger, Michael B., Costa, Antonio Carlos, Wyart, Claire
Format: Preprint
Veröffentlicht: 2024
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author Sridhar, Gautam
Vergassola, Massimo
Marques, Joao C.
Orger, Michael B.
Costa, Antonio Carlos
Wyart, Claire
author_facet Sridhar, Gautam
Vergassola, Massimo
Marques, Joao C.
Orger, Michael B.
Costa, Antonio Carlos
Wyart, Claire
contents Animals chain movements into long-lived motor strategies, exhibiting variability across scales that reflects the interplay between internal states and environmental cues. To reveal structure in such variability, we build Markov models of movement sequences that bridges across time scales and enables a quantitative comparison of behavioral phenotypes among individuals. Applied to larval zebrafish responding to diverse sensory cues, we uncover a hierarchy of long-lived motor strategies, dominated by changes in orientation distinguishing cruising versus wandering strategies. Environmental cues induce preferences along these modes at the population level: while fish cruise in the light, they wander in response to aversive stimuli, or in search for appetitive prey. As our method encodes the behavioral dynamics of each individual fish in the transitions among coarse-grained motor strategies, we use it to uncover a hierarchical structure in the phenotypic variability that reflects exploration-exploitation trade-offs. Across a wide range of sensory cues, a major source of variation among fish is driven by prior and/or immediate exposure to prey that induces exploitation phenotypes. A large degree of variability that is not explained by environmental cues unravels motivational states that override the sensory context to induce contrasting exploration-exploitation phenotypes. Altogether, by extracting the timescales of motor strategies deployed during navigation, our approach exposes structure among individuals and reveals internal states tuned by prior experience.
format Preprint
id arxiv_https___arxiv_org_abs_2405_17143
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Uncovering multiscale structure in the variability of larval zebrafish navigation
Sridhar, Gautam
Vergassola, Massimo
Marques, Joao C.
Orger, Michael B.
Costa, Antonio Carlos
Wyart, Claire
Biological Physics
Neurons and Cognition
Quantitative Methods
Animals chain movements into long-lived motor strategies, exhibiting variability across scales that reflects the interplay between internal states and environmental cues. To reveal structure in such variability, we build Markov models of movement sequences that bridges across time scales and enables a quantitative comparison of behavioral phenotypes among individuals. Applied to larval zebrafish responding to diverse sensory cues, we uncover a hierarchy of long-lived motor strategies, dominated by changes in orientation distinguishing cruising versus wandering strategies. Environmental cues induce preferences along these modes at the population level: while fish cruise in the light, they wander in response to aversive stimuli, or in search for appetitive prey. As our method encodes the behavioral dynamics of each individual fish in the transitions among coarse-grained motor strategies, we use it to uncover a hierarchical structure in the phenotypic variability that reflects exploration-exploitation trade-offs. Across a wide range of sensory cues, a major source of variation among fish is driven by prior and/or immediate exposure to prey that induces exploitation phenotypes. A large degree of variability that is not explained by environmental cues unravels motivational states that override the sensory context to induce contrasting exploration-exploitation phenotypes. Altogether, by extracting the timescales of motor strategies deployed during navigation, our approach exposes structure among individuals and reveals internal states tuned by prior experience.
title Uncovering multiscale structure in the variability of larval zebrafish navigation
topic Biological Physics
Neurons and Cognition
Quantitative Methods
url https://arxiv.org/abs/2405.17143