Scapanorhynchus rapax

(Quaas, 1902)


Classification: Elasmobranchii Lamniformes Mitsukurinidae

Reference of the original description
Quaas, A. (1902)
II. Die Fauna der Overwegischichten und der Blätterthone in der libyschen Wüste. Palaeontographica, 30(2), 153–336

Synonyms / new combinations and misspellings
Lamna rapax, Otodus smilodon, Scapanorhynchus cf. rapax, Scapanorhynchus smilodon

Types
Scapanorhynchus rapax



Description:


Citation: Scapanorhynchus rapax (Quaas, 1902): In: Database of fossil elasmobranch teeth www.shark-references.com, World Wide Web electronic publication, Version 11/2024

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Remarks
shark-references Species-ID=6202;

References
Guinot, G. & Condamine, F.L. (2023)
Global impact and selectivity of the Cretaceous-Paleogene mass extinction among sharks, skates, and rays. Science, 379, 802–806
DOI: 10.1126/science.abn2080
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
Jambura, P.L. & Kindlimann, R. & López-Romero, F. & Marramà, G. & Pfaff, C. & Stumpf, S. & Türtscher, J. & Underwood, C.J. & Ward, D.J. & Kriwet, J. (2019)
Micro-computed tomography imaging reveals the development of a unique tooth mineralization pattern in mackerel sharks (Chondrichthyes; Lamniformes) in deep time. Scientific Reports, 9, Article 9652
DOI: 10.1038/s41598-019-46081-3
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
Cappetta, H. & Bardet, N. & Pereda Suberbiola, X. & Adnet, S. & Akkrim, D. & Amalik, M. & Benabdallah, A. (2014)
Marine vertebrate faunas from the Maastrichtian phosphates of Benguérir (Ganntour Basin, Morocco): Biostratigraphy, palaeobiogeography and palaeoecology. Palaeogeography, Palaeoclimatology, Palaeoecology, 409, 217–238
DOI: 10.1016/j.palaeo.2014.04.020
Schultz, O. (2013)
Pisces. In Piller, W.E. (ed.) Catalogus Fossilium Austriae, Band 3 - Verlag der Österreichischen Akademie der Wissenschaften, Wien, ISBN13: 978-3-7001-7238-3, 576 pp.
Retzler, A. & Wilson, M.A. & Avni, Y. (2013)
Chondrichthyans from the Menuha Formation (Late Cretaceous: Santonian–Early Campanian) of the Makhtesh Ramon region, southern Israel. Cretaceous Research, 40, 81–89
DOI: 10.1016/j.cretres.2012.05.009
Ikejiri, T. & Ebersole, J.A. & Blewitt, H.L. & Ebersole, S.M. (2013)
An overview of Late Cretaceous vertebrates from Alabama. Bulletin of the Alabama Museum of Natural History, 31(1), 46–66
Wilson, M.A. & Zaton, M. & Avni, Y. (2012)
Origin, palaeoecology and stratigraphic significance of bored and encrusted concretions from the Upper Cretaceous (Santonian) of southern Israel. Palaeobiodiversity and Palaeoenvironments, 92(3), 343–352
DOI: 10.1007/s12549-012-0082-8
da Silva, C.M. (2007)
Os vertebrados da Bacia da Paraíba: Cretáceo Superior-Paleoceno, Nordeste do Brasil. Thesis, Universidade Federal de Pernambuco
Souto, A.A. & de Cássia Tardin Cassab, R. & Sardenberg Salgado de Carvalho, M. (2005)
Seláquios do Acervo do Museu de Ciências da Terra / DNPM-RJ. [Selachians from the Collection of Museu de Ciências da Terra / DNPM-RJ]. Anuário do Instituto de Geociências, 28(1); 183–184
Bardet, N. & Cappetta, H. & Pereda Suberbiola, X. & Mouty, M. & Al-Maleh, A.K. & Ahmad, A.M. & Khrata, O. & Gannoum, N. (2000)
The marine vertebrate faunas from the Late Cretaceous phosphates of Syria. Geological Magazine, 137(3), 269–290
Lewy, Z. & Cappetta, H. (1989)
Senonian elasmobranch teeth from Israel. Biostratigraphic and paleoenvironmental implications. Neues Jahrbuch für Geologie und Paläontologie, Monatshefte, 1989(4), 212–222
Kolodny, Y. & Raab, M. (1988)
Oxygen isotopes in phosphatic fish remains from Israel: Paleothermometry of tropical cretaceous and tertiary shelf waters. Palaeogeography, Palaeoclimatology, Palaeoecology, 64(1–2), 59–67
DOI: 10.1016/0031-0182(88)90142-3
Herman, J. (1977)
Les Sélaciens des terrains néocrétacés et paléocènes de Belgique et des contrées limitrophes. Eléments d'une biostratigraphie intercontinentale. Mémoires pour servir à l'explication des Cartes géologiques et minières de la Belgique, 15, 1–401
Applegate, S.P. (1970)
The vertebrate fauna of the Selma Formation of Alabama. Part VIII. The fishes. Fieldiana Geology, Mem., 3(8), 1–72
Signeux, J. (1959)
Contributions à la stratigraphie et la paléontologie du Crétacé et du Nummulitique de la marge NW de la Péninsule Arabique. A: Poissons et reptiles marins. Notes et Mémoires sur le Moyen–Orient, 7, 223–228
Rebouças, J.C. & da Santos, R.S. (1956)
Fauna ictiológica do Fosfato de Pernambuco. Boletim da Divisão de Geologia e Mineralogia, 162, 1–29
Arambourg, C. (1952)
Les vertébrés fossiles des gisements de phosphates (Maroc-Algérie-Tunisie). Notes et Mémoires du Service Géologique du Maroc, 92, 1–372
Ambroggi, R. & Arambourg, C. (1951)
Sur le Maestrichtien et l'Eocène inférieur de la vallée du Sous (Sud-Marocain). Comptes Rendus de l'Académie des Sciences, 232, 170–171
Priem, M.F. (1914)
Sur les Vertébrés du Crétacé et de l'Eocène d'Egypte. Bulletin de la Société géologique de France, (Serie 4), 14, 366–382
Quaas, A. (1902)
II. Die Fauna der Overwegischichten und der Blätterthone in der libyschen Wüste. Palaeontographica, 30(2), 153–336
Quaas, A. (1902)
II. Die Fauna der Overwegischichten und der Blätterthone in der libyschen Wüste. Palaeontographica, 30(2), 153–336