Mujeres de América y su aporte a la paleontología de peces

Contenido principal del artículo

Katia A. González-Rodríguez
Gloria Arratia
Hans-Peter Schultze

Resumen

Tradicionalmente los estudios paleontológicos han sido conducidos por investigadores del sexo masculino y no es la excepción cuando se trata del estudio de peces fósiles; sin embargo, en las últimas décadas, mujeres paleoictiólogas se han sumado al conocimiento de este grupo tan diverso de vertebrados, siendo este incremento más notable en Europa. En este trabajo se resaltan los estudios realizados por mujeres de las Américas que han contribuido de manera sobresaliente al entendimiento del origen, evolución, diversificación y clasificación de los peces. Su incansable labor por entender los caracteres morfológicos que definen a los taxones, la ontogenia, las homologías, los patrones evolutivos, las relaciones filogenéticas y paleogeográficas de los peces, tanto recientes como fósiles, es reconocida; no obstante, es necesario resaltar la calidad humana, sencillez y resiliencia de estas grandes paleoictiólogas que han enfrentado retos y obstáculos, y que, a su vez, se han concentrado en formar nuevos especialistas que continúen su legado, además de formar una comunidad intercultural con los interesados en el estudio de este grupo.


Resumen no técnico
Los peces son el grupo de vertebrados más numerosos que existe y su registro fósil es extenso. Los estudios sobre los peces fósiles comenzaron hace más de un siglo y han sido liderados principalmente por hombres; no obstante, en las últimas décadas las mujeres han desempeñado un papel importante en el conocimiento de su taxonomía, clasificación, relaciones de parentesco, ecología y evolución. La historia de estas especialistas comenzó en Europa y Asia, donde fueron entrenadas por hombres expertos en el tema; algunas lograron obtener puestos importantes en instituciones de renombre, pero otras no tuvieron la misma suerte. Lo mismo ocurrió en países de las Américas, aunque existen varios ejemplos de superación. La falta de oportunidades para conseguir un trabajo que les permita hacer investigación, además de las responsabilidades que adquieren si optan por la maternidad y el cuidado de la familia, son factores que pueden llevar a buscar otras posibilidades para subsistir. En este trabajo se muestra la historia del desarrollo de los estudios en peces fósiles, haciendo énfasis en las Américas y se resaltan las importantes contribuciones de algunas mujeres especialistas en el grupo.

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Detalles del artículo

Cómo citar
González-Rodríguez, K. A., Arratia, G., & Schultze, H.-P. (2026). Mujeres de América y su aporte a la paleontología de peces. Paleontología Mexicana, 15(1), 149–171. https://doi.org/10.22201/igl.05437652e.2026.15.1.411
Sección
Número especial: Mujeres en la paleontología

Citas

Agassiz, L. (1833–1843). Recherches sur les poissons fossiles. Neuchâtel (Suisse).

Alaniz-Galván, A. (2011). Primer registro de perciformes fósiles paleocénicos de Palenque, Chiapas, México [Bachelor thesis]. Facultad de Ciencias, Universidad Nacional Autónoma de México.

Altner, M., Schliewen, U., Penk, S. B. R., & Reichenbacher, B. (2017). †Tugenchromis pickfordi gen. et sp. nov. from the upper Miocene – a stem-group cichlid of the ‘East African Radiation’. Journal of Vertebrate Paleontology, 37(2), Article e1297819.

Andrews, M. (1973). Interrelationships of crossopterygians. In P.H. Greenwood, R.S. Miles, & C. Patterson (Eds.), Interrelationships of Fishes Supplement 1 (53, pp. 138–177). Zoological Journal of the Linnean Society.

Andrews, M. (1977). The axial skeleton of the coelacanth, Latimeria. Linnean Society Symposium Series, 4, 277–288.

Andrews, M., & Westoll, S. W. (1970). The postcranial skeleton in Rhipidistian Fishes excluding Eusthenopteron. Transactions of the Royal Society of Edinburg, 68(12), 391–489.

Andrews, M., Long, L., Ahlberg, P., Barwick, R., & Campbell, K. (2005). The structure of the sarcopterygian Onychodus jandemarrai n. sp. from Gogo, Australia: with a functional interpretation of the skeleton. Earth and Environmental Science Transactions of the Royal Society of Edinburgh, 96(3), 197–307. doi:10.1017/s0263593305000106

Arratia, G. (1981). Varasichthys ariasi n. gen. et sp. from the Upper Jurassic from Chile (Pisces, Telostei, Varasichthyidae n. fam,). Palaeontographica A, 175, 107–139.

Arratia, G. (1997). Basal teleosts and teleostean phylogeny. Palaeo Ichthyologica, 7, 1–168.

Arratia, G. (1999). The monophyly of Teleostei and stem group teleosts. In G. Arratia, & Schultze, H.-P. (Eds.), Mesozoic Fishes — Systematics and the Fossil Record (pp. 265–334). Verlag Dr. F. Pfeil, München, Germany.

Arratia, G. (2001). The Sister-group of Teleostei: Consensus and Disagreements. Journal of Vertebrate Paleontolology, 21(4), 767–773.

Arratia, G. (2008). Actinopterygian postcranial skeleton with special reference to the diversity of fin ray elements, and the problem of identifying homologies. In G. Arratia, H.-P. Schultze, & M.V.H. Wilson (Eds.), Mesozoic Fishes 4 – Homology and Phylogeny (pp. 49–101). Verlag. Dr. Friedrich Pfeil, München, Germany.

Arratia, G. (2013). Morphology, taxonomy, and phylogeny of Triassic pholidophorid fishes (Actinopterygii, Teleostei). Journal of Vertebrate Paleontology, Memoir 13, 33, 1–138. https://doi.org/10.1080/02724634.2013.835642

Arratia, G. (2021). Scientific Spotlight: Dr. Gloria Arratia. Ichthyology and Herpetology, 109(3), 906–909.

Arratia, G., & Schultze, H.-P. (1985). Late Jurassic teleosts (Actinopterygii, Pisces) from northern Chile and Cuba. Palaeontographica A, 189, 29–61.

Arratia, G., & Schultze, H.-P. (2024). The oldest teleosts (Teleosteomorpha): their early taxonomic, phenotypic and ecological diversification during the Triassic. Fossil Record, 27(1), 29–53. https://doi.org/10.3897/fr.27.115970

Arratia, G., Chang, A., & Chong, G. (1975a). Peces fósiles del Norte de Chile. Revista de Estudios del Pacífico, 9, 21–36.

Arratia, G., Chang, A., & Chong, G. (1975b). Sobre un pez fósil del Jurásico de Chile y sus probables relaciones con clupeidos sudamericanos vivientes. Revista Geológica de Chile, 2, 20–31.

Arratia, G., Schultze, H.-P., & Casciotta, J. R. (2001). Vertebral column and associated elements in dipnoans and comparison with other fishes. Development and homology. Journal of Morphology, 250(2), 101–172.

Arratia, G., González-Rodríguez, K. A., & Hernández-Guerrero, C. (2018). A new pachyrhizodontid fish (Actinopterygii, Teleostei) from the Muhi Quarry (Albian-Cenomanian), Hidalgo, Mexico. Fossil Record, 21, 93–107. https://doi.org/10.5194/fr-21-93-2018

Arratia, G., & González-Rodríguez, K. A. (2024). A New Intriguing Teleost from the Albian Muhi Quarry, Central Mexico, and Early Euteleostean Diversification. Diversity, 16(7), 414. https://doi.org/10.3390/d16070414

Azpelicueta, M. M. (1994). Three East-Andean species of diplomystids (Siluriformes: Diplomystidae). Ichthyological Exploration of Freshwaters, 5, 223–240.

Azpelicueta, M. M., & Cione, A. L. (2011). Redescription of the Eocene catfish Bachmannia chubutensis (Teleostei: Bachmanniidae) of Southern South America. Journal of Vertebrate Paleontology, 31(2), 258–269.

Azpelicueta, M. M., & Cione, A. L. (2016). A Southern species of the tropical genus Phractocephalus (Teleostei: Siluriformes) on the Miocene of South America. Journal of South America Earth Sciences, 67, 221–230.

Azpelicueta, M. M., & Rubilar, A. (1998). A Miocene Nematogenys (Teleostei: Siluriformes: Nematogenyidae) from South-Central Chile. Journal of Vertebrate Paleontology, 18(3), 475–483.

Baños-Rodríguez, R. E., González-Rodríguez, K. A., Wilson, M. V. H., & González-Martínez, J. A. (2020). A new species of Heckelichthys from the Muhi Quarry (Albian–Cenomanian) of central Mexico. Cretaceous Research, 110 (2020) 104415, 1–14. https://doi.org/10.1016/j.cretres.2020.104415

Beltan, L. (1968). La faune ichthyologique de l’ Eotrias du NW de Madagascar: le neurocrâne. Cahiers du Paléontologie, 1968, 1–125 (C. N. R. S., edit).

Beltan, L. (1977). La parturition d’un Actinoptérygien du Nord-Ouest de Madagascar. Comptes Rendus de l'Académie des Sciences, Série D, 284, 2223–2225.

Beltan, L. (1996). Overview of systematics, paleobiology, and paleoecology of Triassic fishes of northwestern Madagascar. In G. Arratia, & G. Viohl (Eds.), Mesozoic Fishes-Systematics and Paleoecology (pp. 479–500). Verlag Dr. F. Pfeil, München, Germany.

Bocchino, A. R. (1967). Luisiella inexcutata gen. et sp. nov. (Pisces, Clupeiformes, Dussumieridae) del Jurásico superior de la Provincia de Chubut, Argentina. Ameghiniana, 5(2), 91–100.

Bocchino, A. R. (1973). Semionotidae (Pisces, Holostei, Semionotiformes) de la Formación Lagarcito (Jurásico Superior?), San Luis, Argentina. Ameghiniana, 10(3), 254–268.

Bocchino, A. R. (1974). Austrolepidotes cuyanus gen. et sp. nov. y otros restos de peces fósiles de la Formación Lagarcito (? Jurásico superior), San Luis, Argentina. Ameghiniana, 11(3), 237–248.

Bocchino, A. R. (1978). Revision de los Osteichthyes fosiles de la República Argentina 1. Identidad de Tharrias feruglioi Bordas 1943 y Oligopleurus groeberi Bordas 1943. Ameghiniana, 15(3–4), 301–320.

Brazeau, M. D., Giles, S., Dearden, R. P., Jerve, A., Ariunchimeg, Y., Zorig, E., Sansom, R., Guillerme, T., & Castiello, M. (2020). Endochondral bone in an Early Devonian ‘placoderm’ from Mongolia. Nature Ecology & Evolution, 4(11), 1–8. https://doi.org/10.1038/s41559-020-01290-2

Chang, M.-M. (1991). “Rhipidistians”, Dipnoans and Tetrapods. In H.-P. Schultze, & L. Trueb (Eds.), Origins of the higher groups of tetrapods: Controversy and Consensus (pp. 3–28). Cornell University Press, Ithaca, NY, USA. https://www.jstor.org/stable/10.7591/j.ctv75d32t.5

Chang, M.-M. (1995). Diabolepis and its bearing on the relationship between porolepiforms and dipnoans. Bulletin du Muséum National d’Histoire Naturelle, Paris 4e Série, 17C(1–4), 235–268.

Chang, M.-M., & Jin, F. (1996). Mesozoic Fish faunas of China. In G. Arratia, & G. Viohl (Eds.), Mesozoic Fishes — Systematics and Paleoecology (pp. 461–478). Verlag Dr. Friedrich Pfeil, München, Germany.

Chang, M.-M., & Miao, D. (1999). ‘Mid’ -Cretaceous fish faunas from northeast China. In G. Arratia, & H.-P. Schultze (Eds.), Mesozoic Fishes 2 — Systematics and Fossil Record (pp. 469–480). Verlag Dr. Friedrich Pfeil, München, Germany.

Cloutier, R., Clement, A., Lee, M. S. Y., Noël, R., Béchard, I., Roy, V., & Long, J. A. (2020). Elpistostege and the origin of the vertebrate hand. Nature, 579, 549–554.

Cooper, S. A., López-Arbarello, A., & Maxell, E. E. (2024). First occurrence of a †coccolepidid fish (?Chondrostei: †Coccolepididae) from the Upper Lias (Toarcian, Early Jurassic) of southern Germany. Palaeontologia Electronica, 27(1), Article a23. https://doi.org/10.26879/1326

Cuevas-Cardona, M. C., & González-Rodríguez, K. A. (Eds.). (2015). Los Rostros ocultos de la ciencia. Universidad Autónoma del Estado de Hidalgo, Mexico.

Cupello, C., Brito, P. M., Herbin, M., Meunier, F. J., Janvier, P., Dutel, H., & Clément, G. (2015). Allometric growth in the extant coelacanth lung during ontogenetic development. Nature Communications, 6, Article 8222. https://doi.org/10.1038/ncomms9222

Cupello, C., Meunier, F. J., Herbin, M., Clément, G., & Brito, P. M. (2017). Lung anatomy and histology of the extant coelacanth shed light on the loss of air-breathing during deep-water adaptation in actinistians. Royal Society Open Science, 4, Article 161030. http://dx.doi.org/10.1098/rsos.161030

Cupello, C., Hirasawa, T., Tatsumi, N., Yabumoto, Y., Gueriau, P., Isogai, S., Matsumoto, R., Saruwatari, T., King, A., Hoshino, M., Uesugi, K., Okabe, M., & Brito, P. M. (2022). Lung evolution in vertebrates and the water-to-land transition. Elife, 11, Article e77156. https://doi.org/10.7554/eLife.77156

Cupello, C., Clément, G., Herbin, M., Meunier, F. J., & Brito, P. M. (2024). Pulmonary arteries in coelacanths shed light on the vasculature evolution of airbreathing organs in vertebrates. Scientific Reports, 14, Article 10624. https://doi.org/10.1038/s41598-024-610658

Dolgopol de Sáez, M. (1949a). Noticias sobre peces fósiles Argentinos. Notas del Museo de La Plata, Paleontología, 4(19), 423–432.

Dolgopol de Sáez, M. (1949b). Noticias sobre peces fósiles Argentinos. Notas del Museo de La Plata, Paleontología, 14(96), 443–449.

Dueck, M. E., & Murray, A. M. (2024). Hemigrammopetersius barnardi (Teleostei: Characiformes: Alestidae): a study of skeletal ontogeny and identification of homology for phylogenetic analysis. Vertebrate Anatomy Morphology Palaeontology, 11, 101–112. https://doi.org/10.18435/vamp29393

Ebert, M., & López-Arbarello, A. (2025). A new species of the genus Caturus (Caturidae, Amiiformes) from the Upper Jurassic of the Solnhofen Archipelago (Germany). Swiss Journal of Palaeontology, 144(1). https://doi.org/10.1186/s13358-025-00383-4

Ebert, M., Kölbl-Ebert, M., & Lane, J. A. (2015). Fauna and predator-prey relationships of Ettling, an Actinopterygian Fish-Dominated Konservat Lagerstätte from the Late Jurassic of Southern Germany. PLoS ONE, 10(1), Article e0116140. Doi:10.1371/journal.pone.0116140

Echeverria, E., & Gallo, V. (2015). Historical relationship of the Caribbean and Amazonian Miocene ichthyofaunas: A hypothesis reviewed under a biogeographical approach. Geobios, 48, 309–320.

Fielitz, C., & González-Rodríguez, K. A. (2008). A new species of Ichthyotringa from El Doctor Formation (Cretaceous), Hidalgo, México. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 4 – Systematics, Homology, and Nomenclature (pp. 373–388). Verlag Dr. Friedrich Pfeil, München, Germany.

Fielitz, C., & González-Rodríguez, K. A. (2010). A new species of Enchodus (Aulopiformes: Enchodontidae) from the Cretaceous (Albian to Cenomanian) of Zimapán, Hidalgo, México. Journal of Vertebrate Paleontology, 30(5), 1343–1351. http://www.bioone.org/toc/vrpa/30/5

Friedman, M., Mondéjar-Fernández, J., Henderson, S., Challands, T., & Giles, S. (2025). Braincase and endocast anatomy in porolepiforms (Sarcopterygii: Dipnomorpha): evidence from the Early Devonian (Emsian) 'porolepidid' Durialepis edentates. Earth and Environmental Science Transactions of the Royal Society of Edinburg, 115 (Special issue 3-4), 130–146. https://doi.org/10.1017/S1755691024000057

Gallo, V. (2005). Redescription of Lepidotes piauhyensis Roxo and Löfgren, 1936 (Neopterygii, Semionotiformes, Semionotidae) from the ?Late Jurassic–Early Cretaceous of Brazil. Journal of Vertebrate Paleontology, 25(4), 757–769.

Gallo, V., Calvo, J. O., & Kellner, A. W. A. (2011). First record of a clupeomorph fish in the Neuquén Group (Portezuelo Formation), Upper Cretaceous of Patagonia, Argentina. Cretaceous Research, 32, 223–235.

Gallo, V., Salgado de Carvalho, M. S., & Secioso Santos, H. R. (2021). Nova ocorrência de †Mawsoniidae (Sarcopterygii, Actinistia) na Formação Morro do Chaves, Cretáceo Inferior da bacia de Sergipe-Alagoas, nordeste do Brasil. Boletim do Museu Paraense Emílio Goeldi — Ciências Naturais, 5(2), 195–205. https://doi.org/10.46357/bcnaturais.v5i2.643

Gallo, V., Lins de Paiva, H. C., Petra, R., & Brito, P. M. (2022). Lophionotus parnaibensis, sp. nov. (Semionotiformes, Semionotidae) in the Upper Jurassic of the Parnaíba Basin, Northeastern Brazil. Journal of Vertebrate Paleontology, 41(4). https://doi.org/10.1080/02724634.2021.1994983

Gallo, V., de Figueiredo, F. J., Brum, A., & Kellner, A. W. A. (2025). First derecitid fish from the Upper Cretaceous of Antarctica. Scientific Report, 15(1). https://doi.org/10.1038/s41598-025-03570-y

Gallo-da-Silva, V., & Figueiredo, F. J. (1999). Pelotius hesselae, gen et sp. nov. (Teleostei: Holocentridae) from the Cretaceous (Turonian) of the Pelotas Basin. Journal of Vertebrate Paleontology, 19(2), 263–270.

Gayet, M. (1981). Contribution a l’étude anatomique et systématique de l’ichthyofaune cenomanienne du Portugal. Deuxième partie: les ostariophysaires. Comunicações dos Serviços Geológicos de Portugal, 67, 173–190.

Gayet, M. (1986). Ramillichthys Gayet du Céenomanien Inférieur marin de Ramallah (Judée): une introduction aux relations phylogénétiques des ostaryiphysi. Mémoirs du Muséum National d’Histoire Naturelle, Série C, 51, 1–81.

Gayet, M., & Meunier, F. (2003). Paleontology and Paleobiogeography of Catfishes. In G. Arratia, B. G. Kapoor, M. Chardon, & R. Diogo, (Eds.), Catfishes (pp. 491–522). Science Publishers, Inc., Enfield, NH, USA.

Gibson, S. Z. (2013a). A new hump-backed ginglymodian fish (Neopterygii: †Semionotiformes) from the Upper Triassic Chinle Formation of southeastern Utah. Journal of Vertebrate Paleontology, 33, 1037–1050.

Gibson, S. Z. (2013b). Biodiversity and evolutionary history of †Lophionotus (Neopterygii: †Semionotiformes) from the western United States. Copeia, 4, 582–603.

Gibson, S. Z. (2015). Evidence of a specialized feeding niche in a Late Triassic ray-finned fish: Evolution of multidenticulate teeth and benthic scraping in †Hemicalypterus. The Nature of Science — Naturwissenschaften, 102(3–4), 10. https://doi.org/10.1007/s00114-015-1262-y

Gibson, S. Z. (2016). Redescription and phylogenetic placement of †Hemicalypterus weiri Schaeffer, 1967 (Actinopterygii, Neopterygii) from the Triassic Chinle Formation, Southwestern United States: New insights into morphology, ecological niche, and phylogeny. PLoS ONE, 11(9), Article e0163657. https://doi.org/10.1371/journal.pone.0163657

Gibson, S. Z. (2018). A new species of Lasalichthys (Actinopterygii, Redfieldiiformes) from the Upper Triassic Dockum Group of Howard County, Texas, with revisions to the genera Lasalichthys and Synorichthys. Journal of Vertebrate Paleontology, 38(5), e1513009. https://doi.org/10.1080/02724634.2018.1513009

Gierl, C., Dohrmann, M., Keith, P., Humphreys, M., Esmaeili, H. R., Vukić, J., Šanda, R., & Reichenbacher, B. (2022). An integrative phylogenetic approach for inferring relationships of fossil gobioids (Teleostei: Gobiiformes). PLoS ONE, 17(7), Article e0271121. https://doi.org/10.1371/journal.pone.0271121

Giles, S., Kolmann, M. A., & Friedman, M. (2025). Tongue-bite apparatus highlights functional innovation in a 310-million-year-old ray-finned fish. Biology Letters, 21(9), Article 20250270. https://doi.org/10.1098/rsbl.2025.0270

Giordano, P. G., Arratia, G., & Schultze, H.-P. (2016). Scale morphology and specialized dorsal scales of a new teleosteomorph fish from the Aptian of West Gondwana. Fossil Record, 19, 61–81. https://doi.org/10.5194/fr-19-61-2016

Giordano, P. G., Succar, C. A., Codorniú, L., Cione, A. L., & Arratia, G. (2018). Zurupleuropholis gen. nov. (Teleostei, Albian, Argentina), first pleuropholids from the Cretaceous of South America. Cretaceous Research, 84, 223–239. https://doi.org/10.1016/j.cretres.2017.11.017

Giordano, P. G., Benavente, C. A., & Suárez Davi, S. (2023). Macro and micromorphology of scales from an endemic South American Actinopterygii family (Pseudobeaconiidae, Triassic, Cuyana Basin). Ameghiniana, 60(2), 164–177. http://dx.doi.org/10.5710/AMGH.03.02.2023.3540

González-Rodríguez, K. A. (2004). Descripción y sistemática de la familia Macrosemiidae (Neopterygii-Halecostomi) de la Cantera Tlayúa, Puebla, significancia paleogeográfica y paleoecológica [Doctoral dissertation]. Universidad Nacional Autónoma de México.

González-Rodríguez, K. A., & Reynoso-Rosales, V. H. (2004). A new Notagogus (Macrosemiidae-Halecostomi) species from the Albian Tlayúa Quarry, Central Mexico. In G. Arratia, & A. Tintori (Eds.), Mesozoic Fishes 3. Systematics, Paleoenvironments and Biodiversity (pp. 265–278). Verlag Dr. Friedrich Pfeil, München, Germany.

González-Rodríguez, K. A., & Fielitz, C. (2008). A new species of acanthomorph fish from the Upper Cretaceous Muhi Quarry, Hidalgo, Central México. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 4 – Systematics, Homology, and Nomenclature (pp. 399–411). Verlag Dr. Friedrich Pfeil, München, Germany.

González-Rodríguez, K., A., Applegate, S. P., & Espinosa-Arrubarrena, L. (2004). A New World Macrosemiidae (Neopterygii: Halecostomi) genus in the Albian of Tepexi de Rodríguez, Puebla, Central México. Journal of Vertebrate Paleontology, 24(2), 281–289.

González-Rodríguez, K. A., Cuevas-Cardona, C., & Castillo-Cerón, J. (Eds.). (2009). Los fósiles del estado de Hidalgo. Universidad Autónoma del Estado de Hidalgo, Mexico.

González-Rodríguez, K. A., Schultze, H-P., & Arratia, G. (2013). Miniature armored teleosts from the Albian-Cenomanian (Cretaceous) of Mexico. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 5 – Global Diversity and Evolution (pp. 457–487) Verlag Dr. Friedrich Pfeil, München, Germany. http://www.pfeil-verlag.de/07pala/pdf/4_59d17.pdf

González-Rodríguez, K. A., Bravo-Cuevas, V. M., Cuevas-Cardona, C., Cabral-Perdomo, M. A., & Ortiz Caballero, E. (2023). The hidden faces of Paleontology: Some case studies in Central Mexico. Geoheritage, 15(134), 1–13. https://doi.org/10.1007/s12371-023-00902-0.

Gorizdro-Kulczycka, Z. (1934). Sur les Ptytodontidae du Devonien supérieur du Massif de S-te Croix. Travaux du Service Géologique de Pologne, 3(1), 19–38.

Gorizdro-Kulczycka, Z. (1937). Note on the dipterid lungfishes of the Devonian of the St. Croix Massif. Comptes Rendus Série Géologique Pologne, 48, 66–67.

Gouiric Cavalli, S., & Arratia, G. (2022). A new Pachycormiformes (Actinopterygii) from the Upper Jurassic of Gondwana sheds light on the evolutionary history of the group. Journal of Systematic Palaeontology, 19(21), 1517–1550. https://doi.org/10.1080/14772019.2022.2049382

Gouiric Cavalli, S., Milanese, S., Cariglino, B., & Reguero, M. A. (2025). Ray-Finned Fish Scales from the Late Jurassic of Antarctica. Ameghiniana, 62(1), 1–22. https://doi.org/10.5710/AMGH.16.12.2024.3612

Gouiric Cavalli, S., Iglesias, A., Cariglino, B., & Reguero, M. (2024). A Late Jurassic deep-bodied actinopterygian from Antarctica. Acta Palaeontologica Polonica, 69, 467–483.

Grande, T. (1999). Distribution patterns and historical biogeography of gonorynchiform fishes (Teleostei: Ostariophysi). In G. Arratia, & H.-P. Schultze (Eds.), Mesozoic Fishes 2 — Systematics and Fossil Record (pp. 425–444). Verlag Dr. Friedrich Pfeil, München, Germany.

Grande, T., & Poyato-Ariza, F. (1999). Phylogenetic relationships of fossil and Recent gonorynchiform fishes (Teleostei: Ostariophysi). Zoological Journal of the Linnean Society, 125(2), 197–238.

Grande, T., & de Pinna, M. (2004). The evolution of the Weberian apparatus: A phylogenetic perspective. In G. Arratia, & A. Tintori (Eds.), Mesozoic Fishes 3 — Systematics, Paleoenvironments and Biodiversity (pp. 429–448). Verlag Dr. Friedrich Pfeil, München, Germany.

Grande, T., & Grande, L. (2008). Reevaluation of the gonorynchiform genera †Ramallichthys, †Judeichthys and †Notogoneus, with comments on the families †Charitosomidae and Gonorynchidae. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 4–Homology and Phylogeny (pp. 295–310). Verlag Dr. Friedrich Pfeil, München, Germany.

Grande, T., & Poyato-Ariza, F. J. (2010). Reassessment and comparative morphology of the gonorynchiform head skeleton. In T. Grande, F. Poyato-Ariza, & R. Diogo (Eds.), Gonorynchiformes and Ostariophysan Relationships. A Comprehensive Review (Series on: Teleostean Fish Biology) (pp.1–37). Science Publishers, Enfield, England.

Grande, T., & Arratia, G. (2010). Morphological analysis of the gonorynchiform postcranial skeleton. In T. Grande, F. J., Poyato-Ariza, & R. Diogo (Eds.), Gonorynchiformes and Ostariophysan Relationships. A Comprehensive Review (Series on: Teleostean Fish Biology) (pp. 1–33). Science Publishers, Enfield, England.

Grande, T., & Wilson, M. V. H. (2021). A new cryptic species of Polymixia (Teleostei) Acanthomorpha, Polymixiiformes, Polymixiidae) revealed by molecules and morphology. Ichthyology & Herpetology, 109(2), 567–586.

Grande, T., Poyato-Ariza, F. J., & Diogo, R. (Eds.). (2010). Gonorynchiformes and Ostariophysan Relationships. A Comprehensive Review (Series on: Teleostean Fish Biology). Science Publishers, Enfield, England.

Grande, T., Borden, W. C., Wilson, M. V. H., & Scarpitta, L. (2018). Phylogenetic relationships among fishes in the order Zeiformes based on molecular and morphological data. Copeia, 106(1), 20–48.

Gregory, W. K. (1933). Fish skulls. A study of the evolution of natural mechanisms. American Philosophical Society, 23(2), 1–416.

Grogan, E. D., & Lund, R. (2009). Two new iniopterygians (Chondrichthyes) from the Mississippian (Serpukhovian) Bear Gulch Limestone of Montana with evidence of a new form of chondrichthyan neurocranium. Acta Zoologica (Stockholm), 90(Suppl. 1), 134–151. https://doi.org/10.1111/J.1463-6395.2008.00371.X

Grogan, E., Lund, R., & Greenfest-Allen, E. (2012). The origin and relationships of early chondrichthyans. In J. C. Carrier, J. A. Musick, & M. R. Heithaus (Eds.), Biology of Sharks and their Relatives (pp. 3–29). CRC Press, Boca Raton, FL, USA. https://doi.org/10.1201/b11867-3

Grogan, E., Lund, R., & Fath, M. (2014). A new petalodont chondrichthyan from the Bear Gulch Limestone of Montana, USA, with reassessment of Netsepoye hawesi and comments on the morphology of holomorphic petalodonts. Paleontological Journal, 48(9), 1003–1014. https://doi.org/10.1134/S0031030114090044

Grogan, E., Lund, R., & Jacob, A. (2025). Apholidotus, a highly specialized new actinopterygian from the Bear Gulch Limestone (Heath Formation, Serpukhovian, Upper Mississippian) of Montana, USA. Annals of Carnegie Museum, 91(1), 39–54. https://doi.org/10.2992/007.091.0103

Hernández-Guerrero, C., Cantalice, K. M., González-Rodríguez, K. A., & Bravo-Cuevas, V. M. (2021). The first record of a pterothrissin (Albuliformes, Albulidae) from the Muhi Quarry, mid-Cretaceous (Albian-Cenomanian) of Hidalgo, central Mexico. Journal of South American Earth Sciences, 107, 1–13.

Jobbins, M., Rucklin, M., Sánchez-Villagra, M. R., Lelievre, H., Grogan, E., Szrek, P., & Klug, C. (2024). Why the long face? – high disparity in early vertebrate evolution reflected by a placoderm with extreme lower jaw elongation. Proceedings of the 17 International Symposium on Early and Lower Vertebrates. Rimouski-Miguasha, Quebec, pp. 51.

Johanson, Z. (2021). Paleontology: There are more placoderms in the sea. Current Biology, 31(16), R1012-R1014. https://doi.org/10.1016/j.cub.2021.06.073

Johanson, Z. (2022). Vertebrate cranial evolution: Contributions and conflict from the fossil record. Evolution & Development, 25(1), 119–133. https://doi.org/10.1111/ede.12422

Lane, J. A. (2010). Morphology of the Braincase in the Cretaceous Hybodont Shark Tribodus limae (Chondrichthyes: Elasmobranchii), Based on CT Scanning. American Museum Novitates, 3681, 1–70.

Lane, J. A., & Ebert, M. (2011). Revision of Furo muensteri (Halecomorphi, Ophiopsidae) from the Upper Jurassic of Western Europe, with comments on the genus. Journal of Vertebrate Paleontology, 32(4), 799–819. https://doi.org/10.1080/02724634.2012.680325

Lane, J. A., & Maisey, J. (2012). The visceral skeleton and jaw suspension in the durophagous hybodontid shark Tribodus limae from the Lower Cretaceous of Brazil. Journal of Paleontology, 86(5), 886–905. DOI: 10.2307/23254510

Lane, J. A. & Ebert, M. (2015). A taxonomic reassessment of Ophiopsis (Halecomorphi, Ionoscopiformes), with a revision of Upper Jurassic species from the Solnhofen Archipelago, and a new genus of Ophiopsidae. Journal of Vertebrate Paleontology, 35(1), 1–23. https://doi.org/10.1080/02724634.2014.883238

Lin, C., De Gracia, B., Pierotti, M., & Andrews, A. H. (2019). Reconstructing reef fish communities using fish otoliths in coral reef sediments. PLoS One, 14(6), Article e0218413. https://doi.org/10.1371/journal.pone.0218413

Liu, J. (2021). You are how you look: potential utility of quantitative body shape analysis in classification of Eocene cypriniforms. In A. Pradel, J. S. S. Denton, & P. Janvier (Eds.), Ancient Fishes and Their Living Relatives - A Tribute to John G. Maisey (pp. 71–79). Publishing House Dr. Friedrich Pfeil, Munich.

Liu, J., & Chang, M.-M. (2009). A new Eocene catostomid (Teleostei: Cypriniformes) from northeastern China and early divergence of Catostomidae. Science in China Series D Earth Sciences, 52(2), 1–13.

Liu, J., Chang, M.-M., Wilson, M. V. H., & Murray, A. M. (2015). A new family of Cypriniformes (Teleostei, Ostariophysi) based on a redescription of †Jianghanichthys hubeiensis (Lei, 1977) from the Eocene Yangxi Formation of China. Journal of Vertebrate Paleontology, 35(6), Article e1004073. https://doi.org/10.1080/02724634.2015.1004073

Liu, J., Brinkman, D. B., Murray, A. M., Newbrey, M. G., Zhou, Z., Van Loon, L. L., & Banerjee, N. R. (2025). Marine Origin and Freshwater Radiations of Otophysans. Science, 390(6768), 65–69. https://doi.org/10.1126/science.adr4494

López-Arbarello, A., & Sferco, E. (2018). Neopterygian phylogeny: The merger essay. Royal Society Open Science, 5(3), Article 172337. https://doi.org/10.1098/rsos.172337

López-Arbarello, A., Concheyro, A., Palma, R., & Aguirre-Urieta M. B. (2023). The early fossil record of Caturoidea (Halecomorphi: Amiiformes): biogeographic implications. Swiss Journal of Palaeontology, 142(33), 1–12. http://dx.doi.org/10.1186/s13358-023-00297-z

Lund, R., & Lund, W. (1984). New genera and species of coelacanths from the Bear Gulch Limestone (Lower Carboniferous) of Montana (U.S.A.). Geobios, 17(2), 237–244. https://doi.org/10.1016/S0016-6995(84)80145-X

Lund, R., & Poplin, C. (1997). The radinichthyids (paleoniscoid actinopterygians) from the Bear Gulch limestones of Montana (USA, Lower Carboniferous). Journal of Vertebrate Paleontology, 17(3), 466–486.

Lund, R., Grogan, E., & Jacob, A. (Asha) (2025). Apholidotus, a highly specialized new actinopterygian from the Best Gulch limestone (Heath Formation, Serpukhovian, Upper Mississippian) of Montana, USA. Annals Carnegie Museum, 91(1), 39–54.

Lupercio-Espericueta, N., & Alvarado-Ortega, J. (2025). Importancia de la diversidad taxonómica del orden Crossognathiformes en México. Memorias del XII Congreso Latinoamericano de Paleontología, Puebla, Mexico, pp. 384.

Malabarba, M. C. (1988). Loricariid dermal plates and pectoral fin spines (Osteichthyes, Siluriformes). Comunicações do Museu de Ciências e Tecnologia da PUCRS, Série Zoologia, 5, 1–5.

Malabarba, M. C., & Lundberg, J. G. (1985). A fossil loricariid catfish (Siluriformes, Loricarioidea) from the Tremembe Basin, eastern Brazil. Neotropical Ichthyology, 5, 263–270.

Malabarba, M. C., & Malabarba, L. R. (2010). Biogeography of Characiformes and evaluation of the available information of fossil and extant taxa. In J. Nelson, H.-P. Schultze, & M. V. H. Wilson (Eds.), Origin and Phylogenetic Interrelationships of Teleosts (pp. 411–430). Verlag Dr. Friedrich Pfeil, München, Germany.

Malabarba, M. C., Oliveira, M. M., & Cunha, L. F. (1998). Some Callichthyidae fossil remains (Ostariophysi, Siluriformes) from the Solimoes Formation, Acre State, Northern Brazil. Comunicações do Museu de Ciências e Tecnologia da PUCRS, Série Zoologia, 11, 99–108.

Maxwell, E. E., & Cooper, S. (2025). Scale histology in the Early Jurassic fish Pachycormus (Actinopterygii, Pachycormidae). Journal of Vertebrate Paleontology, 44(6). https://doi.org/10.1080/02724634.2025.2493164

Maxwell, E. E., Cooper, S., Serafini, G., & Schweigert, G. (2025). A new hypsocormine pachycormid from the Upper Jurassic Nusplingen Plattenkalk (Kimmeridgian, Germany) provides new insights into body plan evolution and scale reduction in Pachycormidae (Actinopterygii). Journal of Vertebrate Paleontology, 44(1). https://doi.org/10.1080/02724634.2025.2490123

Melgarejo-Damián, M. P. (2011). Análisis cuantitativo multivariado de los peces Ellimmichthyiformes de la cantera Tlayúa (Cretácico: Albiano), Puebla, México. [Master thesis]. Facultad de Ciencias, Universidad Nacional Autónoma de México.

Miao, D. (2010). Ode to an unbreakable spirit — Chang Meemann’s contributions to paleoichthyology. In D. K. Elliott, J. D. Maisey, X. Yu, & D. Miao (Eds.), Morphology, Phylogeny and Paleobiogeography of Fossil Fishes (pp. 11–23). Verlag Dr. Friedrich Pfeil, München, Germany.

Mickle, K. E. (2013). Revisiting the actinopterygian preoperculum. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 5 — Global Diversity and Evolution (pp. 35–71). Verlag Dr. Friedrich Pfeil, München, Germany.

Mickle, K. E. (2015). Identification of the bones of the snout in fossil lower actinopterygians—a new nomenclature scheme based on characters. Copeia, 103(4), 838–857.

Mickle, K. E. (2017). The lower actinopterygian fauna from the Lower Carboniferous Albert Shale formation of New Brunswick, Canada—a review of previously described taxa and a description of a new genus and species. Fossil Record, 20, 47–67.

Mickle, K. E. (2018). A new lower actinopterygian fish from the Upper Mississippian Bluefield Formation of West Virginia, U.S.A. PeerJ, 6, Article e5533. https://doi.org/10.7717/peerj.5533

Muñoz-Ramírez, C. P., Colin, N., Canales-Aguirre, C. B., Manosalva, A., López-Rodríguez, R., Sukumaran, J., & Górski, K. (2023). Species tree analyses and speciation-based species delimitation support new species in the relict catfish family Diplomystidae and provide insights on recent glacial history in Patagonia. Molecular Phylogenetics and Evolution, 189, Article 107932. https://doi.org/10.1016/j.ympev.2023.107932

Murray, A. M., & Wilson, M. V. H. (1999). Contributions of fossils to the phylogenetic relationships of the percopsiform fishes (Teleostei: Paracanthopterygii): order restored. In G. Arratia, & H.-P. Schultze (Eds.), Mesozoic Fishes 2 — Systematics and Fossil Record (pp. 397–411). Verlag Dr. Friedrich Pfeil, München, Germany.

Murray, A. M., Wilson, M. V. H. (2013). Two new paraclupeid fishes (Clupeomorpha: Ellimmichthyiformes) from the Upper Cretaceous of Morocco. In G. Arratia, H.-P. Schultze & M. V. H. Wilson (Eds.), Mesozoic Fishes 5 — Global Diversity and Evolution (pp. 267–290). Verlag Dr. Friedrich Pfeil, München, Germany.

Nelson, J. (2010). Gloria Arratia’s contributions to our understanding of lower teleosteans phylogeny and classification. In J. S. Nelson., H.-P., Schultze, & M. V. H., Wilson (Eds.), Origin and phylogenetic interrelationships of Teleosts. Honoring Gloria Arratia (pp. 11–36). Verlag Dr. Friedrich Pfeil, München, Germany.

Nelson, J., Grande, T., & Wilson, M. V. H. (2016). Fishes of the World. John Wiley & Sons, New York, NY, USA.

Obruchev, D. V. (Ed.). (1964). Fundamentals of Paleontology = Osnovy paleontologii: a manual for paleontologists and geologists of the USSR, v. XI. (Agnatha, Pisces).

O'Dea, A., De Gracia, B., García-Méndez, K., Cybulski, J., Lueders-Dumont, J., & Dillon, E. (2024). Fossil otoliths reveal changing predator-prey dynamics and partial resilience in reef fishes. European Geosciences Union General Assembly 2024 (EGU24), Vienna, Austria. Online at https://egu23.eu, id.13217.

Pacheco-Ordaz, S., Mejía, O. y Alvarado-Ortega, J. (2025a). Un pez pycnodontiforme de cuerpo romboidal del Albiano Tlayúa lagerstätte cerca de Tepexi de Rodríguez, Puebla, México. Memorias del XII Congreso Latinoamericano de Paleontología, Puebla, Mexico, p. 384.

Pacheco-Ordaz, S., Reyes-López A., & Alvarado-Ortega, J. (2025b). A Turonian pycnodontiform fish from the San José de Gracia Quarry, Puebla, Mexico, Boletín de la Sociedad Geológica Mexicana, 77(1), Article A241224.

Panzeri, K. M., Gouiric Cavalli, S., Fillippi, L., & Cione, A. L. (2022). Description of the first Cretaceous (Santonian) articulated skeletal lungfish remains from South America, Argentina. Comptes Rendus Palevol, 21, 815–835.

Pears, J., Johanson, Z., Boisvert, C., & Trinajstic, K. M. (2025). Reconstructing the paired fin skeletons and musculature in arthrodires from the Devonian (Frasnian) Gogo Formation, Western Australia: implications of arthrodire appendicular anatomy for the serial homology of vertebrate limbs. Journal of Vertebrate Paleontology, 44(4). https://doi.org/10.1080/02724634.2025.2486071

Poplin, C. (1973). Survivance de la ‘ligne épibranchiale’ en particular du ‘canal dorso-latéral antérieur’ (ligne prodonde’) chez Vertébrés inférieurs. Bulletin du Muséum National d’Histoire Naturelle, 175(3), Sciences de la Terre, 29, 117–139.

Poplin, C. (1974) Étude de quelques paléoniscidés pennsylvaniens du Kansas. Éditions du Centre National de la Recherche Scientifique, 151 pp.

Poplin, C. (2004). The dermosphenotic in early actinopterygians, a nomenclatural problem. In G. Arratia, & A. Tintori (Eds.), Mesozoic Fishes 3 — Systematics, Paleoenvironments and Biodiversity (pp. 165–178). Verlag Dr. Friedrich Pfeil, München, Germany.

Poplin, C., & Lund, R. (1995). Fates of the rostral, postrostral and premaxillary in the early history of actinopterygians. In H. Lelièbre, S. Wenz, A. Blieck, & R. Cloutier (Eds.), Premiers vertebres et vertebres inferieurs. Geobios Mémoire Spécial, 19, 225–232.

Poplin, C., & Lund, R. (2000). Two new deep-bodied palaeonisciform actinopterygians from Bear Gulch (Montana, USA, Lower Carboniferous). Journal of Vertebrate Paleontology, 20(3), 428–449.

Reichenbacher, B., Sienknecht, U., Küchenhoff, H., & Fenske, N. (2007). Combined otolith morphology and morphometry for assessing taxonomy and diversity in fossil and extant killifish (Aphanius, †Prolebias). Journal of Morphology, 268, 898–915.

Reichenbacher, B., & Bannikov, A. F. (2025). Diversity of gobioid fishes in the late Middle Miocene of northern Moldova, Eastern Paratethys—part III: dwarf gobies, PalZ, 99, 285–318. https://doi.org/10.1007/s12542-025-00726-z

Reisz, R. R., & Smith, M. M. (2001). Developmental biology. Lungfish dental pattern conserved for 360 Myr. Nature, 411, 548.

Richter, M. (1989). Acregoliathidae (Osteichthyes, Teleostei), a new family of fishes from the Cenozoic of Acre State, Brazil. Zoologica Scripta, 18(2), 311–319.

Richter, M., & Breitkreuz, C. (1997). Permian fish remains from the Peine Formation of Northern Chile. Modern Geology, 21, 171–184.

Richter, M., & Toledo, C. E. V. (2008). The first Triassic lungfish from South America (Santa Maria Formation, Paraná Basin) and its bearing on geological correlations within Pangaea. Geological Society, London, Special Publications. https://doi.org/10.1144/sp295.4

Richter, M., Bosetti, E. P., & Horodyski, R. S. (2017). Early Devonian (Late Emsian) shark fin remains (Chondrichthyes) from the Paraná Basin, southern Brazil. Anais da Academia Brasileira de Ciências, 89(1), 103–118.

Richter, M., Cisneros, J. C., Kammerer, C., Pardo, J., Marsicano, C. A., Fröbisch, J., & Angielczyk, K. D. (2022). Deep-scaled fish (Osteichthyes: Actinopterygii) from the lower Permian (Cisuralian) lacustrine deposits of the Parnaíba Basin, NE Brazil. Journal of African Earth Sciences, 194(2022), Article 104639.

Sallan, L. C. (2012). Tetrapod-like axial regionalization in an early ray-finned fish. Proceedings of the Royal Society B, 279, 3264–3271. https://doi.org/10.1098/rspb.2012.0784

Sallan, L. C. (2014). Major issues in the origin of ray-finned fish (Actinopterygii) biodiversity. Biological Reviews of the Cambridge Philosophical Society, 89(4), 950–971. https://doi.org/10.1111/brv.12086

Sallan, L. C. (2020). Evolution: Spinal innovation enabled by genome duplication. Current Biology, 30(17), R1006–R1008. https://doi.org/10.1016/j.cub.2020.07.001

Sallan, L. C., & Coates, M. (2013). Styracopterid (Actinopterygii) ontogeny and the multiple origins of post-Hangenberg deep-bodied fishes. Zoological Journal of the Linnean Society, 169(1), 156–199. https://doi.org/10.1111/zoj.12054

Schultze, H.-P. (2004). Barbara Jaffe Stahl (17.4.1930 – 16.1.2004). In G. Arratia, & A. Tintori (Eds.), Mesozoic Fishes 3 — Systematics, Paleoenvironments and Biodiversity (pp. 9–10). Verlag Dr. Friedrich Pfeil, München, Germany.

Schultze, H.-P., & Arratia, G. (2013). The caudal skeleton of basal teleosts, its conventions, and some of its major evolutionary novelties in a temporal dimension. In G. Arratia, H.-P. Schultze, & M. V. H. Wilson (Eds.), Mesozoic Fishes 5 — Global Diversity and Evolution (pp. 187–246). Verlag Dr. F. Pfeil, München, Germany.

Schultze, H.-P., Mickle, K. E., Poplin, C., Hilton, E. J., & Grande, L. (2022). Actinopterygii I, Palaeoniscimorpha, stem Neopterygii, Chondrostei. In H.-P. Schultze (Ed.), Handbook of Paleoichthyology, volume 8A (299 pp.). Verlag Dr. Friedrich Pfeil, München, Germany.

Sferco, E., López-Arbarello, A., & Báez, A. M. (2015a). Anatomical description and taxonomy of Luisiella feruglioi (Bordas) new combination, a freshwater teleost (Actinopterygii, Teleostei) from the Upper Jurassic of Patagonia. Journal of Vertebrate Paleontology, 35, 1–20.

Sferco, E., López-Arbarello, A., & Báez, A. M. (2015b). Phylogenetic relationships of †Luisiella feruglioi (Bordas) and the recognition of a new clade of freshwater teleosts from the Jurassic of Gondwana. BMC Evolutionary Biology, 15(1), 268. https://doi.org/10.1186/s12862-015-0551-6

Sferco, E., Aguilera, G., Góngora, J. M., & Mirande, J. M. (2022). The eldest grandmother, late Miocene Jenynsia herbsti sp. nov. (Teleostei, Cyprinodontiformes), and the early diversification of the Anablepidae. Journal of Vertebrate Paleontology, 41(18). https://doi.org/10.1080/02724634.2022.2039168

Smith, M. M., & Coates, M. (2001). The evolution if vertebrate dentitions: phylogenetic patterns and developmental models. In P.E. Ahlberg (Ed.), Major Events in Early Vertebrate Evolution (pp. 223–240). Taylor and Francis, London.

Smith, M. M., & Johanson, Z. (2003). Separate evolutionary origins of teeth from evidence in fossil jawed vertebrates. Sciences, 299(5610), 1235–1236.

Smith, M. M., LeBlanc, A., Underwood, C., & Johanson, Z. (2023). Odontoblast Repertoire Delivers Significantly Different Dental Tissues from Pluripotent Neural Crest-Derived Cells. In Odontodes: The Developmental and Evolutionary Building Blocks of Dentitions (pp. 141–178). CRC Press. https://doi.org/10.1201/9781003439653-5

Stahl, B. J. (1974). Vertebrate History: Problems in Evolution. McGraw-Hill Book Company.

Stahl, B. J. (1999). Chondrostei III. Holocephali. In H.-P. Schultze (Ed.), Handbook of Paleoichthyology, volume 4 (164 pp.). Verlag Dr. Friedrich Pfeil, München, Germany.

Stahl, B. J. (2004). The structure of the early chimaeroid dentition. In G. Arratia, & A. Tintori (Eds.), Mesozoic Fishes 3 — Systematics, Paleoenvironments and Biodiversity (pp. 11–16). Verlag Dr. Friedrich Pfeil, München, Germany.

Tackett, L. S., Zierer, D., & Clement, A. C. (2022). Actinopterygian and chondrichthyan ichthyoliths reveal enhanced cosmopolitanism in Late Triassic marine ecosystems. Historical Biology, 35(11), 2022–2035. https://doi.org/10.1080/08912963.2022.2131405

Taverne, L. (1999). Ostéologie et position systématique de Arratielops vectensis gen nov., teléostéen élopiforme de Wealdien (Crétacé inférieur) d’ Angleterre et de Belgique. Bulletin de l'Institut Royal des Sciences Naturelles de Belgique, 69, 77–96.

Thies, D. (1989). Lepidotes gloriae, sp. nov. (Actinopterygii: Semionotiformes) from the Late Jurassic of Cuba. Journal of Vertebrate Paleontology, 9(1), 18–40.

Turner, S. (2021). Becoming a Vertebrate Palaeontologist. International Journal of Paleobiology & Paleontology, 4(1), Article 000123.

Turner, S., & Cadée, G. C. (2005). Dr. Margaretha Brongersma-Sanders (1905–1996), Dutch Scientist: An Annotated Bibliography of her Work to Celebrate 100 Years since her Birth. Zoologische Mededlingen, Leiden, 80, 183–204.

Vila, I., Scott, S., Mendez, M. A., Valenzuela, F., Iturra, P., & Poulin, E. (2011). Orestias gloriae, a new species of cyprinodontid fish from saltpan spring of the southern high Andes (Teleostei: Cyprinodontidae). Ichthyological Exploration of Freshwaters, 22(4), 345–353.

Wang, H., Sterli, J., Dupret, V., Blom, H., Berta, A., Turner, S., Han, D., Xu, L., & Pan, Z. (2025). A decade of vertebrate palaeontology research: global taxa distribution, gender dynamics and evolving methodologies. Royal Society Open Science, 12, Article 250263. https://doi.org/10.1098/rsos.250263.

Wenz, S. (1967). Compléments a l'étude des poissons actinoptérygiens du Jurassique français. Cahiers du Paléontologie: 1–276. Paris (Centre National de la Recherche Scientifique).

Wenz, S. (1989). Une nouvelle espèce de Coelodus (Pisces, Pycnodontiformes) du Crétacé inférieur de Montsech (Province de Lérida, Espagne): Coelodus subdiscus n. sp. Géobios, 22(4), 515–520.

Wenz, S. (2003). Les Lepidotes (Actinopterygii, Semionotiformes) du Crétacé inférieur (Barrémien) de Las Hoyas (Province de Cuenca, Espagne). Geodiversitas, 25(3), 481–499.

Woodward, A. S. (1889–1901). Catalogue of the fossil fishes in the British Museum (Natural History), volumes 1–4. Cromwell Road, S. W., London, England.