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Nature Communications|December 3, 2017
Small molecule screen in embryonic zebrafish using modular variations to target segmentationSandra Richter, Ulrike Schulze, Pavel Tomançak, et al.Methods in Molecular Biology (Clifton, N.J.)|April 21, 2009
Multiple embryo time-lapse imaging of zebrafish developmentLeah Herrgen, Christian Schröter, Lola Bajard, et al.Developmental Biology|June 1, 2005
Generation of segment polarity in the paraxial mesoderm of the zebrafish through a T-box-dependent inductive eventAndrew C Oates, Laurel A Rohde, Robert K HoBiology Open|June 28, 2017
A framework for quantification and physical modeling of cell mixing applied to oscillator synchronization in vertebrate somitogenesisKoichiro Uriu, Rajasekaran Bhavna, Andrew C Oates, et al.Physical Review. E|November 18, 2025
Multiple Notch ligands in the synchronization of the segmentation clockMarcos Wappner, Koichiro Uriu, Andrew C Oates, et al.Physical Biology|May 8, 2012
Optimal cellular mobility for synchronization arising from the gradual recovery of intercellular interactionsKoichiro Uriu, Saúl Ares, Andrew C Oates, et al.Science (New York, N.Y.)|April 14, 2012
Computational approaches to developmental patterningLuis G Morelli, Koichiro Uriu, Saúl Ares, et al.Papers in Physics|July 16, 2021
Nonlinearity arising from noncooperative transcription factor binding enhances negative feedback and promotes genetic oscillationsIvan M Lengyel, Daniele Soroldoni, Andrew C Oates, et al.Methods in Molecular Biology (Clifton, N.J.)|April 21, 2009
Tissue micromanipulation in zebrafish embryosAlexander Picker, Daniela Roellig, Olivier Pourquié, et al.Elife|February 15, 2021
From local resynchronization to global pattern recovery in the zebrafish segmentation clockKoichiro Uriu, Bo-Kai Liao, Andrew C Oates, et al.Pageof 8