Literature DB >> 9413674

The development of eye movements in the zebrafish (Danio rerio).

S S Easter1, G N Nicola.   

Abstract

We investigated the development of oculomotor activity in zebrafish embryos and larvae of ages 48-96 hrs postfertilization (hpf). The optokinetic response (OKR: smooth tracking movements evoked by a rotating striped drum) improved steadily after its onset at 73 hpf, and by 96 hpf had a achieved a gain (eye velocity/drum velocity) of 0.9, comparable to adult performance. Reset movements (the fast phase of optokinetic nystagmus) developed over 75-81 hpf. The vestibuloocular reflex (VOR: compensatory eye movements evoked by passive rotation of the head) developed over 74-81 hpf, and the associated reset movements, over 76-81 hpf. The VOR was qualitatively normal in dark-reared fish, which excludes an essential role for visual experience in its early development. Spontaneous saccadic movements (the fast shift of eye position) appeared between 81 and 96 hpf, and at 96 hpf had maximum velocities that were comparable to adults. These results are compared to, and found to be incompatible with, two earlier ideas of motor development: behavioral "differentiation" and "encephalization."

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Year:  1997        PMID: 9413674     DOI: 10.1002/(sici)1098-2302(199712)31:4<267::aid-dev4>3.0.co;2-p

Source DB:  PubMed          Journal:  Dev Psychobiol        ISSN: 0012-1630            Impact factor:   3.038


  50 in total

1.  Ganzfeld ERG in zebrafish larvae.

Authors:  Mathias W Seeliger; Albrecht Rilk; Stephan C F Neuhauss
Journal:  Doc Ophthalmol       Date:  2002-01       Impact factor: 2.379

2.  Retinal defects in the zebrafish bleached mutant.

Authors:  Stephan C F Neuhauss; Mathias W Seeliger; Carsten P Schepp; Oliver Biehlmaier
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3.  VisioTracker, an innovative automated approach to oculomotor analysis.

Authors:  Kaspar P Mueller; Oliver D R Schnaedelbach; Holger D Russig; Stephan C F Neuhauss
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4.  In vivo imaging reveals dendritic targeting of laminated afferents by zebrafish retinal ganglion cells.

Authors:  Jeff S Mumm; Philip R Williams; Leanne Godinho; Amy Koerber; Andrew J Pittman; Tobias Roeser; Chi-Bin Chien; Herwig Baier; Rachel O L Wong
Journal:  Neuron       Date:  2006-11-22       Impact factor: 17.173

5.  Genetic single-cell mosaic analysis implicates ephrinB2 reverse signaling in projections from the posterior tectum to the hindbrain in zebrafish.

Authors:  Tomomi Sato; Takanori Hamaoka; Hidenori Aizawa; Toshihiko Hosoya; Hitoshi Okamoto
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6.  Velocity storage mechanism in zebrafish larvae.

Authors:  Chien-Cheng Chen; Christopher J Bockisch; Giovanni Bertolini; Itsaso Olasagasti; Stephan C F Neuhauss; Konrad P Weber; Dominik Straumann; Melody Ying-Yu Huang
Journal:  J Physiol       Date:  2013-11-11       Impact factor: 5.182

7.  Whole-brain activity maps reveal stereotyped, distributed networks for visuomotor behavior.

Authors:  Ruben Portugues; Claudia E Feierstein; Florian Engert; Michael B Orger
Journal:  Neuron       Date:  2014-03-19       Impact factor: 17.173

Review 8.  Investigating the genetics of visual processing, function and behaviour in zebrafish.

Authors:  Sabine L Renninger; Helia B Schonthaler; Stephan C F Neuhauss; Ralf Dahm
Journal:  Neurogenetics       Date:  2011-01-26       Impact factor: 2.660

9.  Two distinct aquaporin 0s required for development and transparency of the zebrafish lens.

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Journal:  Invest Ophthalmol Vis Sci       Date:  2010-07-29       Impact factor: 4.799

10.  Quantification of vestibular-induced eye movements in zebrafish larvae.

Authors:  Weike Mo; Fangyi Chen; Alex Nechiporuk; Teresa Nicolson
Journal:  BMC Neurosci       Date:  2010-09-03       Impact factor: 3.288

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