Literature DB >> 22884772

Automated high-throughput neurophenotyping of zebrafish social behavior.

Jeremy Green1, Christopher Collins, Evan J Kyzar, Mimi Pham, Andrew Roth, Siddharth Gaikwad, Jonathan Cachat, Adam Michael Stewart, Samuel Landsman, Fabrizio Grieco, Ruud Tegelenbosch, Lucas P J J Noldus, Allan V Kalueff.   

Abstract

Zebrafish (Danio rerio) are rapidly becoming an important model organism in neuroscience research, representing an excellent species to study complex social phenotypes. Zebrafish actively form shoals, which can be used to quantify their shoaling behaviors, highly sensitive to various experimental manipulations. Recent advances in video-tracking techniques have enabled simultaneous tracking of multiple subjects, previously assessed by manual scoring of animal behavior. Here we examined the effect of group-size in the shoaling paradigm (ranging from 2 to 8 fish), and evaluated the ability of novel video-tracking tools to accurately track an entire shoal, compared to traditional manual analysis of shoaling phenotypes. To further validate our approach, the effects of the psychotropic drugs lysergic acid diethylamide (LSD) and 3,4-methlenedioxymethamphetamine (MDMA), as well as exposure to alarm pheromone, previously shown to affect zebrafish shoaling, were examined. Overall, a significant difference in group size was shown in the 2-fish vs. the 3-, 4-, 5-, 6-, 7- and 8-fish groups. Moreover, both LSD and MDMA treatments reduced shoaling (assessed by increased inter-fish distance) as well as proximity (time spent together) among fish. In contrast, exposure to alarm pheromone yielded an increase in shoaling and in proximity in a time-dependent manner. Importantly, a highly significant correlation for manual vs. automated analyses was revealed across all experiments. Collectively, this study further supports the utility of zebrafish to study social behavior, also demonstrating the capacity of video-tracking technology to assess zebrafish shoaling in a high-throughput and reliable manner.
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22884772     DOI: 10.1016/j.jneumeth.2012.07.017

Source DB:  PubMed          Journal:  J Neurosci Methods        ISSN: 0165-0270            Impact factor:   2.390


  49 in total

Review 1.  Automated processing of zebrafish imaging data: a survey.

Authors:  Ralf Mikut; Thomas Dickmeis; Wolfgang Driever; Pierre Geurts; Fred A Hamprecht; Bernhard X Kausler; María J Ledesma-Carbayo; Raphaël Marée; Karol Mikula; Periklis Pantazis; Olaf Ronneberger; Andres Santos; Rainer Stotzka; Uwe Strähle; Nadine Peyriéras
Journal:  Zebrafish       Date:  2013-06-12       Impact factor: 1.985

2.  Cerebral Dopamine Neurotrophic Factor Regulates Multiple Neuronal Subtypes and Behavior.

Authors:  Yu-Chia Chen; Diego Baronio; Svetlana Semenova; Shamsiiat Abdurakhmanova; Pertti Panula
Journal:  J Neurosci       Date:  2020-07-06       Impact factor: 6.167

Review 3.  Zebrafish as an emerging model for studying complex brain disorders.

Authors:  Allan V Kalueff; Adam Michael Stewart; Robert Gerlai
Journal:  Trends Pharmacol Sci       Date:  2014-01-09       Impact factor: 14.819

Review 4.  Zebrafish models in neuropsychopharmacology and CNS drug discovery.

Authors:  Kanza M Khan; Adam D Collier; Darya A Meshalkina; Elana V Kysil; Sergey L Khatsko; Tatyana Kolesnikova; Yury Yu Morzherin; Jason E Warnick; Allan V Kalueff; David J Echevarria
Journal:  Br J Pharmacol       Date:  2017-04-05       Impact factor: 8.739

Review 5.  Perspectives on zebrafish models of hallucinogenic drugs and related psychotropic compounds.

Authors:  Nikhil Neelkantan; Alina Mikhaylova; Adam Michael Stewart; Raymond Arnold; Visar Gjeloshi; Divya Kondaveeti; Manoj K Poudel; Allan V Kalueff
Journal:  ACS Chem Neurosci       Date:  2013-08-06       Impact factor: 4.418

Review 6.  The study of psychiatric disease genes and drugs in zebrafish.

Authors:  Martin Haesemeyer; Alexander F Schier
Journal:  Curr Opin Neurobiol       Date:  2014-12-16       Impact factor: 6.627

7.  Developmental social isolation affects adult behavior, social interaction, and dopamine metabolite levels in zebrafish.

Authors:  Soaleha Shams; Shahid Amlani; Christine Buske; Diptendu Chatterjee; Robert Gerlai
Journal:  Dev Psychobiol       Date:  2017-11-01       Impact factor: 3.038

8.  The Tagging Procedure of Visible Implant Elastomers Influences Zebrafish Individual and Social Behavior.

Authors:  Tommaso Ruberto; Romain J G Clément; Chiara Spinello; Daniele Neri; Simone Macrì; Maurizio Porfiri
Journal:  Zebrafish       Date:  2018-08-02       Impact factor: 1.985

Review 9.  Zebrafish models for translational neuroscience research: from tank to bedside.

Authors:  Adam Michael Stewart; Oliver Braubach; Jan Spitsbergen; Robert Gerlai; Allan V Kalueff
Journal:  Trends Neurosci       Date:  2014-04-09       Impact factor: 13.837

10.  Adult zebrafish in CNS disease modeling: a tank that's half-full, not half-empty, and still filling.

Authors:  Darya A Meshalkina; Elana V Kysil; Jason E Warnick; Konstantin A Demin; Allan V Kalueff
Journal:  Lab Anim (NY)       Date:  2017-10-06       Impact factor: 12.625

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