Due to an error during typesetting, Figure 1B was incorrectly displayed in the original publication of this paper. This has now been corrected online. The production team apologizes for this error.
. Author manuscript; available in PMC: 2021 Apr 12.
Published in final edited form as: Neuron. 2021 Mar 3;109(5):905. doi: 10.1016/j.neuron.2021.02.005
Central vestibular tuning arises from patterned convergence of otolith afferents
Zhikai Liu
1, Yukiko Kimura
3, Shin-ichi Higashijima
3, David G C Hildebrand
4, Joshua L Morgan
2, Martha W Bagnall
1,5
Zhikai Liu
1Washington University in St. Louis, Neuroscience, St.
Louis, MO
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Yukiko Kimura
3National Institute for Basic Biology, Neurobiology,
Okazaki, Japan
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Shin-ichi Higashijima
3National Institute for Basic Biology, Neurobiology,
Okazaki, Japan
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David G C Hildebrand
4Laboratory of Neural Systems, The Rockefeller University,
New York, NY
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Joshua L Morgan
2Washington University in St. Louis, Ophthalmology, St.
Louis, MO
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Martha W Bagnall
1Washington University in St. Louis, Neuroscience, St.
Louis, MO
Find articles by Martha W Bagnall
1Washington University in St. Louis, Neuroscience, St.
Louis, MO
2Washington University in St. Louis, Ophthalmology, St.
Louis, MO
3National Institute for Basic Biology, Neurobiology,
Okazaki, Japan
4Laboratory of Neural Systems, The Rockefeller University,
New York, NY
Author contributions: Y.K. and S.H. generated the Tg(nefma:gal4, UAS:GFP) fish line. Z.L. and M.W.B. conceived the project. Z.L. performed the electrophysiology, confocal imaging experiments and analyzed the data. M.W.B., J.L.M. and D.G.C.H. carried out the serial-section EM imaging and reconstruction. Z.L. and M.W.B. wrote the manuscript with input from all other authors.
5
Lead contact: ude.ltsuw@llangab
PMCID: PMC8041230 NIHMSID: NIHMS1684567 PMID: 33662271
The publisher's version of this article is available at Neuron
This corrects the article "Central vestibular tuning arises from patterned convergence of otolith afferents" in volume 108 on page 748.