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Visual–Acoustic Thigmotaxis in Zebrafish Larvae: A High throughput NAM for Neurotoxicity Assessment

2026-02-04

Abstract excerpt

The nervous system is highly vulnerable to chemical disruption, yet current regulatory guidelines do not include behavioral endpoints that capture changes in stress-related responses. Zebrafish larvae, up to 5 days old, have emerged as a promising model to bridge this gap, offering genetic and neurochemical similarity to humans together with high throughput potential. In this work, we have developed and evaluated...

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Literature Corpus work
ddafae93-3bb3-5052-977c-8a3922ebba8b
DOI
10.64898/2026.02.03.703464
Open publication

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Visual–Acoustic Thigmotaxis in Zebrafish Larvae: A High throughput NAM for Neurotoxicity AssessmentDOI 10.64898/2026.02.03.703464
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