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Integrative and Comparative Biology|May 31, 2018
Insights into Electroreceptor Development and Evolution from Molecular Comparisons with Hair CellsClare V H Baker, Melinda S ModrellEvolution & Development|September 29, 2012
Evolution of electrosensory ampullary organs: conservation of Eya4 expression during lateral line development in jawed vertebratesMelinda S Modrell, Clare V H BakerGenesis (New York, N.Y. : 2000)|March 8, 2011
Molecular analysis of neurogenic placode development in a basal ray-finned fishMelinda S Modrell, David Buckley, Clare V H BakerNature Communications|February 7, 2013
Developmental evidence for serial homology of the vertebrate jaw and gill arch skeletonJ Andrew Gillis, Melinda S Modrell, Clare V H BakerThe Journal of Experimental Biology|June 14, 2013
The evolution and development of vertebrate lateral line electroreceptorsClare V H Baker, Melinda S Modrell, J Andrew GillisInvertebrate Systematics|May 14, 2024
Unravelling the relationships among Madrepora Linnaeus, 1758, Oculina Lamark, 1816 and Cladocora Ehrenberg, 1834 (Cnidaria: Anthozoa: Scleractinia)Anna M Addamo, Melinda S Modrell, Marco Taviani, et al.Developmental Biology|August 19, 2017
Notch and Fgf signaling during electrosensory versus mechanosensory lateral line organ development in a non-teleost ray-finned fishMelinda S Modrell, Olivia R A Tidswell, Clare V H BakerDevelopmental Biology|December 17, 2009
Mesoderm and ectoderm lineages in the crustacean Parhyale hawaiensis display intra-germ layer compensationAlivia L Price, Melinda S Modrell, Roberta L Hannibal, et al.Evolution & Development|March 13, 2014
The evolution of the vertebrate cerebellum: absence of a proliferative external granule layer in a non-teleost ray-finned fishThomas Butts, Melinda S Modrell, Clare V H Baker, et al.Nature Communications|October 13, 2011
Electrosensory ampullary organs are derived from lateral line placodes in bony fishesMelinda S Modrell, William E Bemis, R Glenn Northcutt, et al.Pageof 2