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Genesis (New York, N.Y. : 2000)|January 18, 2017
What we can learn from a tadpole about ciliopathies and airway diseases: Using systems biology in Xenopus to study cilia and mucociliary epitheliaPeter Walentek, Ian K QuigleyCold Spring Harbor Protocols|March 20, 2019
Generating a Three-Dimensional Genome from Xenopus with Hi-CIan K Quigley, Sven HeinzPlos Genetics|January 20, 2017
Rfx2 Stabilizes Foxj1 Binding at Chromatin Loops to Enable Multiciliated Cell Gene ExpressionIan K Quigley, Chris KintnerMicroscopy Research and Technique|September 21, 2002
Pigment pattern formation in zebrafish: a model for developmental genetics and the evolution of formIan K Quigley, David M ParichyDevelopment Genes and Evolution|May 18, 2007
Hau-Pax6A expression in the central nervous system of the leech embryoIan K Quigley, Xuanhua Xie, Marty ShanklandDevelopmental Biology|May 25, 2010
A member of the six gene family promotes the specification of P cell fates in the O/P equivalence group of the leech HelobdellaIan K Quigley, Matthew W Schmerer, Marty ShanklandDevelopment (Cambridge, England)|January 27, 2011
Specification of ion transport cells in the Xenopus larval skinIan K Quigley, Jennifer L Stubbs, Chris KintnerDevelopment (Cambridge, England)|November 20, 2016
Foxn4 promotes gene expression required for the formation of multiple motile ciliaEvan P Campbell, Ian K Quigley, Chris KintnerElife|September 14, 2016
Ciliary transcription factors and miRNAs precisely regulate Cp110 levels required for ciliary adhesions and ciliogenesisPeter Walentek, Ian K Quigley, Dingyuan I Sun, et al.Development (Cambridge, England)|November 13, 2004
Pigment pattern evolution by differential deployment of neural crest and post-embryonic melanophore lineages in Danio fishesIan K Quigley, Jessica M Turner, Richard J Nuckels, et al.Pageof 2