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Neuromodulation and Behavioral Flexibility in Larval Zebrafish: From Neurotransmitters to Circuits

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnmol.2021.718951

关键词

zebrafish; neuromodulation; behavior; neuronal circuits; flexibility; foraging; escape (avoidance); arousal

资金

  1. Helmholtz Association of German Research Centers
  2. German Research Foundation (Deutsche Forschungsgemeinschaft) [FI 2339/1-1]

向作者/读者索取更多资源

Animals adapt behaviors based on internal states like hunger and fear; larval zebrafish is an ideal model organism for studying neuronal circuits.
Animals adapt their behaviors to their ever-changing needs. Internal states, such as hunger, fear, stress, and arousal are important behavioral modulators controlling the way an organism perceives sensory stimuli and reacts to them. The translucent zebrafish larva is an ideal model organism for studying neuronal circuits regulating brain states, owning to the possibility of easy imaging and manipulating activity of genetically identified neurons while the animal performs stereotyped and well-characterized behaviors. The main neuromodulatory circuits present in mammals can also be found in the larval zebrafish brain, with the advantage that they contain small numbers of neurons. Importantly, imaging and behavioral techniques can be combined with methods for generating targeted genetic modifications to reveal the molecular underpinnings mediating the functions of such circuits. In this review we discuss how studying the larval zebrafish brain has contributed to advance our understanding of circuits and molecular mechanisms regulating neuromodulation and behavioral flexibility.

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