Agassiz, L. (1839)
Recherches sur les poissons fossiles, 10th and 12th livraisons (April 1839). Petitpierre et Prince (text) and H. Nicolet (plates), Neuchâtel, vol. 3: 141-156, pl. 9, 23, 25, 30a.
Agassiz, L. (1843)
Recherches sur les poissons fossiles, 15th and 16th livraisons (March 1843). Jent and Gassmann, Soleure (text) and H. Nicolet, Neuchâtel (planches). – vol. 3: [i]-[iv], 157-390, 382*-382**, 1–32, [33]-[34], pl. 1, 18, 22, 22a, 22b, 26a, 38, 40b, 40c, 40d, 45, 47
Pictet, F.-J. (1845)
Traité élémentaire de paléontologie; ou, Histoire naturelle des animaux fossiles, considérés dans leurs rapports zoologiques et géologiques. Paris, Langlois et Leclerq, 1844-46, vol. II, pp. 259-310
Giebel, C.G. (1848)
Die Fische der Vorwelt, mit steter Berücksichtigung der lebenden Fische. Erster Band: Wirbelthiere. Dritte Abtheilung: Fische: i–xii, 1–467. Leipzig (Brockhaus).
Gemmellaro, G. (1857)
Ricerche sui pesci fossili della Sicilia. Atti dell' Accademia nat. Catania, ser. 2(13): 279–328, pl. 1–6 [also: Atti dell' Accademia Gioenia die Scienze Naturali, 13, Serie Seconda, 1858]
Bassani, F. (1878)
Ittiodontoliti del Veneto. Atti Accademia Scientifica Veneto-Trentino-Istriana, 5, 275–308
Ameghino, F. (1901)
L'âge des formations sédimentaires de Patagonie. Anales de la Sociedad Científica Argentina, 51, 20–39, 65–91
Ameghino, F. (1906)
Les formations sédimentaires du Crétacé supérieur et du Tertiaire de Patagonie avec un parallèle entre leurs faunes mammalogiques et celles de l'ancien continent. Anales del Museo Nacional de Buenos Aires, 3(8), 1–568
Leriche, M. (1907)
Observations sur les Poissons du Patagonien récemment signalés par M. Fl. Ameghino. Annales de la Société Géologique du Nord, 36, 129–137
Ameghino, F. (1908)
Notes sur les poissons du Patagonien. Anales del Museo Nacional de Buenos Aires, 3(9), 477–497
Leriche, M. (1927)
Les Poissons de la Molasse suisse. Mémoires de la Société Paléontologique Suisse, 47, 57–119
Zbyszewski, G. & Moitinho d'Almeida, F. (1950)
Os peixes miocénicos portugueses. Comunicações dos Serviços Geológicos de Portugal, 31, 308–412
Serralheiro, A. (1954)
Contribuiciao para o conhecimento da fauna ictiológica do Miocénico Marinho de Portugal Continental. Revista da Faculdade de Ciências da Universidade de Lisboa, Serie C, 4, 39–119
Kruckow, T. (1959)
Eine untermiozäne Haifisch-Fauna in Schleswig-Holstein. Meyniana, 8, 82–95
Kruckow, T. (1961)
Miocäne Selachier-Faunen in nordwestdeutschen Randgebieten der Nordsee. Meyniana, 10, 42–48
Kruckow, T. (1964)
Haifisch-Zähne und Fischreste in Tertiär-Geschieben. Aufschluss, Sonderheft 14, 57–63
Kruckow, T. (1965)
Die Elasmobranchier des tertiären Nordseebeckens im nordwestdeutschen Bereich. Senckenbergiana Lethaea, 46a, 215–256
Schultz, O. (1968)
Die Selachierfauna (Pisces, Elasmobranchii) aus den Phosphoritsanden. (Untermiozän) von Plesching bei Linz, Oberösterreich. Naturkundliches Jahrbuch der Stadt Linz, 14, 61–103
Steininger, F. (1969)
Das Tertiär des Linzer Raumes. Kataloge des OÖ. Landesmuseums, 64(Geologie und Paläontologie des Linzer Raumes): 35-52, 1 Tab., Taf. 1-14. - Linz(Stadtmuseum u. OÖ. Landesmuseum).
Brzobohatý, R. & Schultz, O. (1971)
Die Fischfauna der Eggenburger Schichtengruppe. In STEININGER, F., SENES, J. & Mitarbeiter(1971a): M1 Eggenburgien. Die Eggenburger Schichtengruppe und ihr Stratotypus. – Chronostratigraphie und Neostratotypen, Miozän der zentralen Paratethys, 2: 719–759
Schultz, O. (1971)
Beschreibung des Holostratotypus und der Faziostratotypen. In STEININGER, F., SENES, J. & Mitarbeiter(1971a): M1 Eggenburgien. Die Eggenburger Schichtengruppe und ihr Stratotypus. – Chronostratigraphie und Neostratotypen, Miozän der zentralen Paratethys, 2: 104–157
Brzobohatý, R. & Schultz, O. (1973)
Die Fischfauna der Innviertler Schichtengruppe und der Rzehakia Formation. In PAPP, Adolf, RÖGL, Fred, SENES, Ján & Mitarbeiter: M2 Ottnangien. Die Innviertler, Salgótarjáner, Bántapusztaer Schichtengruppe und die Rzehakia Formation. – Chronostratigraphie und Neostratotypen, Miozän der zentralen Paratethys, 3: 652–693
Brzobohatý, R. & Kalabis, V. & Schultz, O. (1975)
Die Fischfauna des Egerien. In BALDI, T., SENES, J. & Mitarbeiter: OM Egerien. – Die Egerer, Pouzdraner, Puchkirchener Schichtengruppe und die Bretkaer Formation. – Chronostratigraphie und Neostratotypen, Miozän der Zentralen Paratethys, 5: 457–477
Ishchenko, V.V. & Gulij, V.N. & Kulchytsky, Y.A. (1986)
Shark teeth in the manganiferous nodules of bottom sediments of the Pacific Ocean North-Eastern Basin. Paleontologiceskij sbornik, 23: 40–47, pls. 1 + 2; [in Russian, with English summary]
von der Hocht, F. (1986)
Stand der Untersuchungen an der Chondrichthyes-Fauna des nordwestdeutschen Tertiärs. Beiträge zur regionalen Geologie der Erde, 18, 503–509
Lienau, H.-W. (1992)
Fundumstände von Chondrichthyer-Resten in miozänen Glimmertonen des nordwestdeutschen Tertiär-Beckens. Kaupia, Darmstädter Beiträge zur Naturgeschichte, 1, 71–87
Arthofer, P. (1993)
Mineralogische und paläontologische Besonderheiten der Phosphoritlagerstätte Prambachkirchen, OÖ. Oberösterreichische GEO-Nachrichten, 8, 13–21
Kent, B.W. (1994)
Fossil Sharks of the Chesapeake Bay Region. Egan Rees and Boyer, Inc. Columbia. 146 pp.
Holec, P. & Hornácek, M. & Sykora, M. (1995)
Lower Miocene Shark (Chondrichthyes, Elasmobranchii) and Whale Faunas near Mučín, Southern Slovakia. Geologické práce, Správy 100, 37–52
Applegate, S.P. & Espinosa-Arrubarrena, L. (1996)
The Fossil History of Carcharodon and Its Possible Ancestor, Cretolamna A Study in Tooth Identification. In A.P. Klimley & D. Ainley, (Eds.), Great White Sharks. The biology of Carcharodon carcharias (pp. 19–36). Academic Press.
Iturralde-Vinent, M.A. & Hubbell, G. & Rojas, R. (1996)
Catalogue of Cuban fossil Elasmobranchii (Paleocene to Pliocene) and paleogeographic implications of their lower to middle Miocene occurrence. Journal of the Geological Society of Jamaica, 31, 7–21
Lebrun, P. (1997)
Requins blancs fossilies. Carcharodon carcharias et les carcharodontides. Minéraux & Fossiles, 250, 10–20
Purdy, R.W. (1998)
The early Miocene fish fauna from the Pollack Farm Site, Delaware. In Benson, R.N.(ed.), Geology and paleontology of the lower Miocene Pollack Farm Sita, Delaware. Delaware Geological Survay, Special Pubblication, 21: 133–139
de Jong, A. (1999)
Haaien- en roggentanden uit Liessel (N.-B.) Fontys Hogescholen, Tilburg
González-Barba, G. & Thies, D. (2000)
Asociaciones faunisticas de condrictios en el Cenozoico de la Peninsula de Baja California, Mexico. Profil, 18: 1–4
Purdy, R.W. & Schneider, V.P. & Applegate, S.P. & McLellan, J.H. & Meyer, R.L. & Slaughter, R. (2001)
The Neogene sharks, rays, and bony fishes from Lee Creek Mine, Aurora, North Carolina. In Geology and paleontology of the Lee Creek Mine, North Carolina, III, Clayton E. RAY & David J. BOHASKA. Smithsonian Contributions to Paleobiology, 90: 71–202, 84fig., 1 tabl.
Cocke, J. (2002)
Fossil Shark Teeth of the World. Lamna Books, 170 p
Aguilera, O.A. & de Aguilera, D.R. (2004)
Giant-toothed White Sharks and Wide-toothed Mako (Lamnidae) from the Venezuela Neogene Their Role in the Caribbean, Shallow-water Fish Assemblage. Caribbean Journal of Science, 40(3), 368–382
Marsili, S. & Carnevale, G. & Danese, E. & Bianucci, G. & Landini, W. (2007)
Early Miocene vertebrates from Montagna della Maiella, Italy. Annales de Paléontologie, 93(1), 27–66
DOI: 10.1016/j.annpal.2007.01.001
Reinecke, T. & von der Hocht, F. & Gürs, K. (2008)
Die Elasmobranchier des Vierlandiums, Unteres Miozän, im Nordwestdeutschen Becken aus Bohrungen und glaziofluviatilen Geröllen („Holsteiner Gestein”) der Vierlande-Feinsande (Holstein) und der Kakert-Schichten (Niederrhein). Palaeontos, 14, 1–54
Costa, S.A.F. & Richter, M. & Toledo, P.M. & Moraes-Santos, H.M. (2009)
Shark teeth from Pirabas Formation (Lower Miocene), northeastern Amazonia, Brazil. Boletim do Museu Paraense Emílio Goeldi, Ciências Naturais, 4(3), 221–230
Visaggi, C.C. & Godfrey, S.J. (2010)
Variation in Composition and Abundance of Miocene Shark Teeth from Calvert Cliffs, Maryland. Journal of Vertebrate Paleontology, 30(1), 26–35
DOI: 10.1080/02724630903409063
Aguilera, O.A. & Ramos, M.I.F. & Paes, E.T. & Ferreira Costa, S.A.R. & Sánchez-Villagra, M.R. (2011)
The Neogene tropical America fish assemblage and the paleobiogeography of the Caribbean region. Swiss Journal of Palaeontology, 130(2), 217–240
DOI: 10.1007/s13358-011-0020-9
Brand, L. & Urbina, M. & Chadwick, A. & Devries, T.J. & Esperante, R. (2011)
A high resolution stratigraphic framework for the remarkable fossil cetacean assemblage of the Miocene/Pliocene Pisco Formation, Peru Journal of South American Earth Sciences, 31(4), 414–425
DOI: 10.1016/j.jsames.2011.02.015
Cione, A.L. & Cozzuol, M.A. & Dozo, M.T. & Hospitaleche, C.A. (2011)
Marine vertebrate assemblages in the southwest Atlantic during the Miocene. Biological Journal of the Linnean Society, 103, 423–440
DOI: 10.1111/j.1095-8312.2011.01685.x
Timmerman, J. & Chandler, R.E. (2011)
Neogene and Quaternary Fossils of North Carolina, A Field Guide. North Carolina Fossil Club, Durham, 58 p.
Cappetta, H. (2012)
Handbook of Paleoichthyology, Vol. 3E: Chondrichthyes · Mesozoic and Cenozoic Elasmobranchii: Teeth. Verlag Dr. Friedrich Pfeil, 512 pp.
González-Rodríguez, K.A. & Espinosa-Arrubarrena, L. & González-Barba, G. (2013)
An overview of the Mexican fossil fish record. In G. Arratia, H.–P. Schultze & M.V.H. Wilson (Eds.), Mesozoic Fishes 5 – Global Diversity and Evolution (pp. 9–34). Verlag Dr. Friedrich Pfeil
Pimiento, C. & González-Barba, G. & Hendy, A.J.W. & Jaramillo, C. & Macfadden, B.J. & Montes, C. & Suareza, S.C. & Shippritt, M. (2013)
Early Miocene chondrichthyans from the Culebra Formation, Panama: a window into marine vertebrate faunas before closure the Central American Seaway. Journal of South American Earth Sciences, 42, 159–170
DOI: 10.1016/j.jsames.2012.11.005
Cook, T.D. & Murray, A.M. & Simons, E.L. & Attia, Y.S. & Chatrath, P. (2014)
A Miocene selachian fauna from Moghra, Egypt. Historical Biology, 22(1–3), 78–87
DOI: 10.1080/08912960903249329
Laurito, C.A. & Calvo, C. & Valerio, A.L. & Calvo, A. & Chacón, R. (2014)
Ictiofauna del mioceno inferior de la localidad de Pacuare de Tres Equis, formación río Banano, provincia de Cartago, Costa Rica, y descripción de un nuevo género y una nueva especie de scaridae. [Lower miocene ichthyofauna from the locality op Pacuare de Tres Equis, río Banano formation, Cartago province, Costa Rica and description of a new genus and species of scaridae] Revista Geológica de América Central, 50, 153–192
Patnaik, R. & Sharma, K.M. & Mohan, L. & Williams, B.A. & Kay, R. & Chatrath, P. (2014)
Additional vertebrate remains from the Early Miocene of Kutch, Gujarat. Special Publication of the Palaeontological Society of India, 5, 335–351
Maisch, H.M. & Becker, M.A. & Chamberlain, J.A. (2015)
Chondrichthyans from a lag deposit between the Shark River Formation (Middle Eocene) and Kirkwood Formation (Early Miocene), Monmouth county, New Jersey. Paludicola, 10(3), 149–183
Aguilera, O. & Luz, Z. & Carrillo-Briceño, J.D. & Kocsis, L. & Vennemann, T.W. & de Toledo, P.M. & Nogueira, A. & Amorim, K.N. & Moraes-Santos, H. & Polck, M.R. & de Lourdes Ruivo, M. & Linhares, A.P. & Monteiro-Neto, C. (2017)
Neogene sharks and rays from the Brazilian ‘Blue Amazon’. PLoS ONE, 12(8), Article e0182740
DOI: 10.1371/journal.pone.0182740
Bianucci, G. & Collareta, A. & Bosio, G. & Landini, W. & Gariboldi, K. & Gioncada, A. & Lambert, O. & Malinverno, E. & de Muizon, C. & Varas-Malca, R. & Villa, I.M. & Coletti, G. & Urbina, M. & Di Celma, C. (2018)
Taphonomy and palaeoecology of the lower Miocene marine vertebrate assemblage of Ullujaya (Chilcatay Formation, East Pisco Basin, southern Peru). Palaeogeography, Palaeoclimatology, Palaeoecology, 511, 256–279
DOI: 10.1016/j.palaeo.2018.08.013
Blume, A. (2018)
Fund eines großen Carcharocles-Zahns an der Algarve (Portugal). Der Steinkern, 35, 72–77
Di Celma, C. & Malinverno, E. & Collareta, A. & Bosio, G. & Gariboldi, K. & Lambert, O. & Landini, W. & Pierantoni, P.P. & Gioncada, A. & Villa, I.M. & Coletti, G. & de Muizon, C. & Urbina, M. & Bianucci, G. (2018)
Facies analysis, stratigraphy and marine vertebrate assemblage of the lower Miocene Chilcatay Formation at Ullujaya (Pisco basin, Peru). Journal of Maps, 14(2), 257–268
DOI: 10.1080/17445647.2018.1456490
Godfrey, S.J. & Ellwood, M. & Groff, S. & Verdin, M.S. (2018)
Carcharocles-bitten odontocete caudal vertebrae from the Coastal Eastern United States. Acta Palaeontologica Polonica, 63(3), 463–468
DOI: 10.4202/app.00495.2018
Kent, B.W. (2018)
The Cartilaginous Fishes (Chimaeras, Sharks, and Rays) of Calvert Cliffs, Maryland, USA. In The Geology and vertebrate paleontology of Calvert Cliffs, Maryland / edited by Stephen J. Godfrey: 45-157
Maisch, H.M. & Becker, M.A. & Chamberlain, J.A. (2018)
Lamniform and Carcharhiniform Sharks from the Pungo River and Yorktown Formations (Miocene–Pliocene) of the Submerged Continental Shelf, Onslow Bay, North Carolina, USA. Copeia, 106(2), 353–374
DOI: 10.1643/OT-18-016
Villafaña, J.A. & Rivadeneira, M.M. (2018)
The modulating role of traits on the biogeographic dynamics of chondrichthyans from the Neogene to the present. Paleobiology, 44(2), 251–262
DOI: 10.1017/pab.2018.7
Carrillo-Briceño, J.D. & Luz, Z. & Hendy, A. & Kocsis, L. & Aguilera, O. & Vennemann, T. (2019)
Neogene Caribbean elasmobranchs: diversity, paleoecology and paleoenvironmental significance of the Cocinetas Basin assemblage (Guajira Peninsula, Colombia). Biogeosciences, 16, 33–56
DOI: 10.5194/bg-16-33-2019
Condamine, F.L. & Romieu, J. & Guinot, G. (2019)
Climate cooling and clade competition likely drove the decline of lamniform sharks. Proceedings of the National Academy of Sciences of the United States of America, 116(41), 20584–20590
DOI: 10.1073/pnas.1902693116
Landini, W. & Collareta, A. & Di Celma, C. & Malinverno, E. & Urbina, M. & Bianucci, G. (2019)
The early Miocene elasmobranch assemblage from Zamaca (Chilcatay Formation, Peru). Journal of South American Earth Sciences, 91, 352–371
DOI: 10.1016/j.jsames.2018.08.004
Perez, V.J. & Godfrey, S.J. & Kent, B.W. & Weems, R.E. & Nance, J.R. (2019)
The transition between Carcharocles chubutensis and Carcharocles megalodon (Otodontidae, Chondrichthyes): lateral cusplet loss through time. Journal of Vertebrate Paleontology, 38(6), Article e1546732
DOI: 10.1080/02724634.2018.1546732
Pollerspöck, J. (2019)
Megalodon und Weißer Hai – Neues zu Evolution, Taxonomie und Paläoökologie. Fossilien, 36(6), 33–38
Charpentier, V. & Adnet, S. & Cappetta, H. (2020)
The tooth of a giant sea creature Otodus (Megaselachus) in the material culture of Neolithic maritime hunter-gatherers at Sharbithat (Sultanate of Oman). International Journal of Osteoarchaeology, 30(6), 835–842
DOI: 10.1002/oa.2914
Höltke, O. & Rasser, M.W. & Unger, E. & Pollerspöck, J. (2020)
The Elasmobranch Fauna from the Upper Marine Molasse (Lower Miocene, Burdigalian) of Ursendorf (District Sigmaringen, Baden-Württemberg, SW-Germany). Palaeontos, 33, 1‒56
Maisch, H.M. & Becker, M.A. & Chamberlain, J.A. (2020)
Macroborings in Otodus megalodon and Otodus chubutensis Shark Teeth from the Submerged Shelf of Onslow Bay, North Carolina, USA: Implications for Processes of Lag Deposit Formation. Ichnos, 27(2), 122–141
DOI: 10.1080/10420940.2019.1697257
Bazzi, M. & Campione, N.E. & Kear, B.P. & Pimiento, C. & Ahlberg, P.E. (2021)
Feeding ecology has shaped the evolution of modern sharks. Current Biology, 31(23), 5138–5148
DOI: 10.1016/j.cub.2021.09.028
Feichtinger, I. & Bracher, H. & Unger, E. & Lüdi, B. & Pollerspöck, J. (2021)
Haie und Rochen der Molasse. www.molasse-haie-rochen.de, accesed 01.11.2021
Feichtinger, I. & Pollerspöck, J. (2021)
Haie im Alpenvorland - Fossile Zeugen eines verschwundenen Paradieses. Verlag Anton Pustet, Salzburg, ISBN-10: ‎3702510230
Godfrey, S.J. & Nance, J.R. & Riker, N.L. (2021)
Otodus-bitten sperm whale tooth from the Neogene of the Coastal Eastern United States. Acta Palaeontologica Polonica, 66(3), 599–603
DOI: 10.4202/app.00820.2020
Perez, V.J. & Leder, R.M. & Badaut, T. (2021)
Body length estimation of Neogene macrophagous lamniform sharks (Carcharodon and Otodus) derived from associated fossil dentitions. Palaeontologia Electronica, 24(1), Article a09
DOI: 10.26879/1140
Adnet, S. & Charpentier, V. (2022)
A new elasmobranch fauna from the early Miocene of Sharbithat (Sultanate of Oman) reveals the teeth of an ancient fantail stingray. Geologica Acta, 20.2, 1–13
DOI: 10.1344/GeologicaActa2022.20.2
Höltke, O. & Maxwell, E.E. & Pollerspöck, J. & Rasser, M.W. (2022)
The shark and ray fauna of the Upper Marine Molasse (Lower Miocene) of Rengetsweiler (Baden-Württemberg, SW Germany). Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 303(1), 89–122
DOI: 10.1127/njgpa/2022/1038
Kast, E.R. & Griffiths, M.L. & Kim, S.L. & Rao, Z.C. & Shimada, K. & Becker, M.A. & Maisch, H.M. & Eagle, R.A. & Clarke, C.A. & Neumann, A.N. & Karnes, M.E. & Lüdecke, T. & Leichliter, J.N. & Martínez-García, A. & Akhtar, A.A. & Wang, X.T. & Haug, G.H. & Sigman, D.M. (2022)
Cenozoic megatooth sharks occupied extremely high trophic positions. Science Advances, 8(25), Article eabl6529
DOI: 10.1126/sciadv.abl6529
Laurito, C.A. & Valerio, A.L. & Calvo, C. (2022)
Nuevos registros de Otodontidae Glickman 1964B (Chondrichthyes) para el sur de la Península de Nicoya, Puntarenas, Costa Rica [New records of Otodontidae Glickman 1964B (Chondrichthyes) from Southern Nicoya Peninsula, Puntarenas, Costa Rica]. Revista Geológica de América Central, 66, 1–13
DOI: 10.15517/rgac.v0i66.49759
McCormack, J. & Griffiths, M.L. & Kim, S.L. & Shimada, K. & Karnes, M. & Maisch, H. & Pederzani, S. & Bourgon, N. & Jaouen, K. & Becker, M.A. & Jöns, N. & Sisma-Ventura, G. & Straube, N. & Pollerspöck, J. & Hublin, J.-J. & Eagle, R.A. & Tütken, T. (2022)
Trophic position of Otodus megalodon and great white sharks through time revealed by zinc isotopes. Nature Communications, 13, Article 2980
DOI: 10.1038/s41467-022-30528-9
Perez, V.J. (2022)
The chondrichthyan fossil record of the Florida Platform (Eocene–Pleistocene). Paleobiology, 48(4), 622–654
DOI: 10.1017/pab.2021.47
Pollerspöck, J. & Güthner, T. & Straube, N. (2022)
Re-evaluation of the Lower Miocene (Burdigalian, Ottnangian) elasmobranch fauna (Elasmobranchii, Neoselachii) from Upper Austria (Allerding, near Schärding, Austria) with comments on the paleogeographic distribution of the recorded squaliform sharks. Annalen des Naturhistorischen Museums in Wien, Series A, 122, 87–163
Sharma, K.M. & Singh, N.A. & Patnaik, R. & Tiwari, R.P. & Singh, N.P. & Singh, Y.P. & Choudhary, D. & Lalotra, S.K. (2022)
Sharks and rays (chondrichthyes, elasmobranchii) from the miocene sediments of Kutch, Gujarat, India: paleoenvironmental and paleobiogeographic implications. Historical Biology, 34(1), 10–29
DOI: 10.1080/08912963.2021.1893712
Karnes, M.E. & Chan, R.L. & Kuntz, J.P. & Griffiths, M.L. & Shimada, K. & Becker, M.A. & Maisch, H.M. & Eagle, R.A. & Brenner-Coltrain, J. & Miller, S. & Kim, S.L. (2024)
Enigmatic carbonate isotope values in shark teeth: Evidence for environmental and dietary controls. Palaeogeography, Palaeoclimatology, Palaeoecology, 635, Article 111943
DOI: 10.1016/j.palaeo.2023.111943
McCormack, J. & Griffiths, M.L. & Maisch, H. & Becker, M.A. & Bourgon, N. & Jaouen, K. & Fuller, B.T. & Pollerspöck, J. & Hampe, O. & Feichtinger, I. & Müller, W. & Shimada, K. (2024)
Applying zinc isotopes to investigate the trophic positions of extinct marine vertebrates, including the megatooth shark Otodus megalodon, in ancient marine ecosystems [Abstract]. EGU General Assembly 2024, Vienna, Austria
DOI: 10.5194/egusphere-egu24-8484