Ayayee P, Wong R
Ecol Evol. 2024; 14(9):e70237.
PMID: 39219576
PMC: 11362613.
DOI: 10.1002/ece3.70237.
Hatchett C, Kristen Hall M, Messer A, Schwalbe R
J Dev Biol. 2024; 12(3).
PMID: 39189261
PMC: 11348029.
DOI: 10.3390/jdb12030021.
Ayayee P, Wong R
bioRxiv. 2024; .
PMID: 38853862
PMC: 11160693.
DOI: 10.1101/2024.05.29.596447.
Kelly J, Wen H, Brehm P
Elife. 2023; 12.
PMID: 37975797
PMC: 10656102.
DOI: 10.7554/eLife.89338.
Skiba A, Koziol E, Luca S, Budzynska B, Podlasz P, van der Ent W
Int J Mol Sci. 2023; 24(3).
PMID: 36768918
PMC: 9916433.
DOI: 10.3390/ijms24032598.
Zebrafish: an efficient vertebrate model for understanding role of gut microbiota.
Xia H, Chen H, Cheng X, Yin M, Yao X, Ma J
Mol Med. 2022; 28(1):161.
PMID: 36564702
PMC: 9789649.
DOI: 10.1186/s10020-022-00579-1.
Transformation of an early-established motor circuit during maturation in zebrafish.
Pallucchi I, Bertuzzi M, Michel J, Miller A, El Manira A
Cell Rep. 2022; 39(2):110654.
PMID: 35417694
PMC: 9071512.
DOI: 10.1016/j.celrep.2022.110654.
Single-Cell Reconstruction of Emerging Population Activity in an Entire Developing Circuit.
Wan Y, Wei Z, Looger L, Koyama M, Druckmann S, Keller P
Cell. 2019; 179(2):355-372.e23.
PMID: 31564455
PMC: 7055533.
DOI: 10.1016/j.cell.2019.08.039.
Zebrafish oxytocin neurons drive nocifensive behavior via brainstem premotor targets.
Wee C, Nikitchenko M, Wang W, Luks-Morgan S, Song E, Gagnon J
Nat Neurosci. 2019; 22(9):1477-1492.
PMID: 31358991
PMC: 6820349.
DOI: 10.1038/s41593-019-0452-x.
Augmentation of spinal cord glutamatergic synaptic currents in zebrafish primary motoneurons expressing mutant human TARDBP (TDP-43).
Petel Legare V, Harji Z, Rampal C, Allard-Chamard X, Rodriguez E, Armstrong G
Sci Rep. 2019; 9(1):9122.
PMID: 31235725
PMC: 6591224.
DOI: 10.1038/s41598-019-45530-3.
Primary cell culture of adult zebrafish spinal neurons for electrophysiological studies.
Meade M, Roginsky J, Schulz J
J Neurosci Methods. 2019; 322:50-57.
PMID: 31028770
PMC: 6530804.
DOI: 10.1016/j.jneumeth.2019.04.011.
Principles Governing Locomotion in Vertebrates: Lessons From Zebrafish.
Berg E, Bjornfors E, Pallucchi I, Picton L, El Manira A
Front Neural Circuits. 2018; 12:73.
PMID: 30271327
PMC: 6146226.
DOI: 10.3389/fncir.2018.00073.
Spinal Control of Locomotion: Individual Neurons, Their Circuits and Functions.
Cote M, Murray L, Knikou M
Front Physiol. 2018; 9:784.
PMID: 29988534
PMC: 6026662.
DOI: 10.3389/fphys.2018.00784.
Functional Consequences of the Postnatal Switch From Neonatal to Mutant Adult Glycine Receptor α1 Subunits in the Mouse Model of Startle Disease.
Schaefer N, Zheng F, van Brederode J, Berger A, Leacock S, Hirata H
Front Mol Neurosci. 2018; 11:167.
PMID: 29910711
PMC: 5992992.
DOI: 10.3389/fnmol.2018.00167.
Expression of the eight GABAA receptor α subunits in the developing zebrafish central nervous system.
Monesson-Olson B, McClain J, Case A, Dorman H, Turkewitz D, Steiner A
PLoS One. 2018; 13(4):e0196083.
PMID: 29702678
PMC: 5922542.
DOI: 10.1371/journal.pone.0196083.
Zebrafish swimming in the flow: a particle image velocimetry study.
Mwaffo V, Zhang P, Romero Cruz S, Porfiri M
PeerJ. 2017; 5:e4041.
PMID: 29158978
PMC: 5691796.
DOI: 10.7717/peerj.4041.
Differential processing in modality-specific Mauthner cell dendrites.
Medan V, Maki-Marttunen T, Sztarker J, Preuss T
J Physiol. 2017; 596(4):667-689.
PMID: 29148564
PMC: 5813616.
DOI: 10.1113/JP274861.
Integration of Descending Command Systems for the Generation of Context-Specific Locomotor Behaviors.
Kim L, Sharma S, Sharples S, Mayr K, Kwok C, Whelan P
Front Neurosci. 2017; 11:581.
PMID: 29093660
PMC: 5651258.
DOI: 10.3389/fnins.2017.00581.
Whole-brain serial-section electron microscopy in larval zebrafish.
Hildebrand D, Cicconet M, Torres R, Choi W, Minh Quan T, Moon J
Nature. 2017; 545(7654):345-349.
PMID: 28489821
PMC: 5594570.
DOI: 10.1038/nature22356.
Ca dynamics in zebrafish morphogenesis.
Tsuruwaka Y, Shimada E, Tsutsui K, Ogawa T
PeerJ. 2017; 5:e2894.
PMID: 28133572
PMC: 5251937.
DOI: 10.7717/peerj.2894.