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The gastropod family Aporrhaidae in the Lower Cretaceous of the Neuquén Basin, west-central Argentina

Published online by Cambridge University Press:  14 July 2015

Cecilia S. Cataldo*
Affiliation:
Instituto de Estudios Andinos Don Pablo Groeber, Consejo Nacional de Investigaciones Científicas y Técnicas, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Pabellón II Ciudad Universitaria, C1428EGA Buenos Aires, Argentina,

Abstract

The gastropod fauna of the Lower Cretaceous of the Argentinian Neuquén Basin contains three aporrhaid species. Protohemichenopus neuquensis Camacho, 1953 is the most abundant, longest-lived, and most geographically widespread of the aporrhaids of this basin, and its protoconch and early teleoconch whorls were unknown until now. The new species Dimorphosoma weaveri features convex to subtly angular spire whorls with opisthocyrt collabral ribs that are more prominent towards the mid-whorl, a bicarinate last whorl with small rounded nodes on the adapical carina, a simple, falcate labral wing which is more or less rectangular proximally and tapering and curving towards its distal end, and a short, straight rostrum. Tylostoma jaworskii Weaver, 1931 is now placed in Harpagodes, and other previous, scattered, coeval records of this genus in the basin are now recognized as part of this single species. It is believed that whereas H. jaworskii preferred shallower-water carbonate settings of low to moderate energy, P. neuquensis and D. weaveri favored siliciclastic to mixed clastic-carbonate environments, in deeper waters. In spite of its endemic elements, this aporrhaid association depicts a predominantly Tethyan influence.

Type
Research Article
Copyright
Copyright © The Paleontological Society 

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References

Aguirre-Urreta, M. B. and Rawson, P. F. 2010. Lower Cretaceous ammonites from the Neuquén Basin, Argentina: the neocomitids of the Pseudofavrella angulatiformis Zone (upper Valanginian). Cretaceous Research, 31:321343.Google Scholar
Aguirre-Urreta, M. B., Casadío, S., Cichowolski, M., Lazo, D. G., and Rodríguez, D. L. 2008. Afinidades paleobiogeográficas de los invertebrados cretácicos de la Cuenca Neuquina, Argentina. Ameghiniana, 45:591612.Google Scholar
Aguirre-Urreta, M. B, Lazo, D. G., Griffin, M., Vennari, V., Parras, A. M., Cataldo, C. S., Garberoglio, R., and Luci, L. 2011. Megainvertebrados del Cretácico y su importancia bioestratigráfica, p. 465488. In Leanza, H., Arregui, C., Carbone, O., Danieli, J. C. and Vallés, J. M. (eds.), Geología y Recursos Naturales de la Provincia del Neuquén. Relatorio del 18vo Congreso Geológico Argentino. Asociación Geológica Argentina, Buenos Aires.Google Scholar
Aguirre-Urreta, M. B., Mourgues, F. A., Rawson, P. F., Bulot, L. G., and Jaillard, E. 2007. The Lower Cretaceous Chañarcillo and Neuquén Andean Basins: ammonoid biostratigraphy and correlations. Geological Journal, 42:143173.Google Scholar
Alarcón, B. and Vergara, M. 1964. Nuevos antecedentes sobre la geología de la Quebrada El Way. Publicaciones del Instituto de Geología de la Universidad de Chile, 26:101128.Google Scholar
Alencáster, G. 1956. Pelecípodos y gasterópodos del Cretácico Inferior de la región de San Juan Raya-Zapotitlán, Estado de Puebla. Paleontología Mexicana, 2:147.Google Scholar
Altinli, I. E. 1966. Geology of Eastern and Southeastern Anatolia. Bulletin of the Mineral Research and Exploration Institute of Turkey, 66:3575.Google Scholar
Bandel, K. 1993. Caenogastropoda during Mesozoic times. Scripta Geologica, Special Issue, 2:756.Google Scholar
Bandel, K. 2007. About the larval shell of some Stromboidea, connected to a review of the classification and phylogeny of the Strombimorpha (Caenogastropoda). Paläontologie, Stratigraphie, Fazies, 15, Freiberger Forschungshefte, C, 524:97206.Google Scholar
Barnes, H. and Bagenal, T. B. 1952. The habits and habitat of Aporrhais pes-pelicani (L.). Proceedings of the Malacological Society of London, 29:101105.Google Scholar
Behrendsen, O. 1891. Zur Geologie des Ostabhanges der argentinischen Cordillere. I Theil. Zeitschrift der Deutschen Geologischen Gesellchaft, 43:369420.Google Scholar
Behrendsen, O. 1892. Zur Geologie des Ostabhanges der argentinischen Cordillere. II Theil. Zeitschrift der Deutschen Geologischen Gesellschaft, 44:142.Google Scholar
Blagovetshenskiy, I. V. and Shumilkin, I. A. 2006. Gastropod mollusks from the Hauterivian of Ulyanovsk (Volga Region): 1. Family Aporrhaidae. Paleontological Journal, 40:3445.Google Scholar
Blagovetshenskiy, I. V. and Shumilkin, I. A. 2012. Gastropods of the Family Aporrhaidae from the Lower Cretaceous of Ulyanovsk, Volga Region. Paleontological Journal, 46:343353.CrossRefGoogle Scholar
Böhm, J. 1885. Der Grünsand von Aachen und seine Molluskenfauna. Naturhistorischer Verein der Preussischen Rheinlande und Westfalens, Sitzungsberichte, 42:1152.Google Scholar
Bouchet, P., Frýda, J., Hausdorf, B., Ponder, W., Valdés, A., and Warén, A. 2005. Working classification of the Gastropoda, p. 240283. In Bouchet, P. and Rocroi, J. P. (eds.), Classification and Nomenclator of Gastropod Families. Malacologia, 47.Google Scholar
Brongniart, A. 1821. Sur les caractères zoologiques des formations, avec l'application des ces caractères à la détermination de quelques terrains de Craie. Annales des Mines, 6:537572.Google Scholar
Burckhardt, C. 1900. Coupe géologique de la Cordillère entre Las Lajas et Curacautin. Anales del Museo de La Plata, Sección Geológica y Mineralógica, 3:1101.Google Scholar
Busson, G. and Albanesi, C. 1967. Le Crétacé inférieur et le Jurassique terminal de l'extrême sud tunisien. Rivista Italiana di Paleontologia e Stratigrafia, 73:591634.Google Scholar
Callapez, P. M. 2008. Palaeogeographic evolution and marine faunas of the Mid-Cretaceous Western Portuguese Carbonate Platform. Thalassas, 24:2952.Google Scholar
Camacho, H. H. 1953. Algunas consideraciones sobre los Aporrhaidae fósiles argentinos. Revista de la Asociación Geológica Argentina, 8:183194.Google Scholar
Cataldo, and Lazo, D. G. 2011. The genus Harpagodes Gill (Gastropoda, Stromboidea) in the Lower Cretaceous of the Neuquén Basin, Argentina. 18vo Congreso Geológico Argentino, Neuquén, Actas, p. 996997.Google Scholar
Corvalán, J. 1956. Über marine Sedimente des Tithon und Neokom der Gegend von Santiago. Geologische Rundschau, 45:919926.Google Scholar
Corvalán, J. and Pérez, D. E. 1958. Fósiles Guías chilenos: Titoniano–Neocomiano. Instituto de Investigaciones Geológicas, Santiago de Chile, 48 p.Google Scholar
Cossmann, M. 1900. Observations sur quelques coquilles crétaciques recueillies en France, 3ème article. Comptes-Rendus 28ème Seánce Association Française pour l'Avancement des Sciences, 1900:18.Google Scholar
Cossmann, M. 1904. Essais de paléonconchologie comparée, vol. 6. The author and de Rudeval, Paris, 151 p.Google Scholar
Cossmann, M. 1906. Essais de paléonconchologie comparée, vol. 7. The author and de Rudeval, Paris, 261 p.Google Scholar
Covacevich, V. 1976. Fauna valanginiana de Peninsula Byers, Isla Livingston, Antartica. Revista Geológica de Chile, 3:2556.Google Scholar
Cox, L. R. 1953. Lower Cretaceous Gastropoda, Lamellibranchia and Annelida from Alexander I Land (Falkland Islands Dependencies). Falkland Islands Dependencies Survey Scientific Reports, 4:114.Google Scholar
Cox, L. R. 1954. Lower Cretaceous Mollusca from Pointe-à-Pierre, Trinidad. Journal of Paleontology, 28:622636.Google Scholar
Cox, L. R. 1960. Gastropoda—general characteristics of Gastropoda, p. I84I169. In Moore, R. C. and Pitrat, C. W. (eds.), Treatise on invertebrate paleontology. Pt. I. Mollusca 1. Geological Society of America and University of Kansas Press, Lawrence.Google Scholar
Cox, L. R. 1965. Jurassic Bivalvia and Gastropoda from Tanganyika and Kenya. Bulletin of the British Museum (Natural History), Geology, 1:137209.Google Scholar
Cox, L. R. 1969. Gasteropodes Jurassiques du Sud-Est tunisien. Annales de Paleontologie, Invertebres, 55:241268.Google Scholar
d'Orbigny, A. C. V. D. 1842. Voyage dans l'Amérique méridionale. Bertrand, Paris, Levrault, Strasbourg, vol. 3, pt. 3 (Géologie), 290 p.; vol. 3, pt. 4 (Paléontologie), 188 p.Google Scholar
d'Orbigny, A. C. V. D. 1843. Paléontologie française. Terrains crétacés. Tome 2, Gastéropodes. V. Masson, Paris, 456 p.Google Scholar
d'Orbigny, A. C. V. D. 1849. Prodrome de paléontologie stratigraphique universelle des animaux mollusques et rayonnés, vol. 1. V. Masson, Paris, 394 p.Google Scholar
d'Orbigny, A. C. V. D. 1850. Prodrome de paléontologie stratigraphique universelle des animaux mollusques et rayonnés, vol. 2. V. Masson, Paris, 427 p.Google Scholar
Da Costa, E. M. 1778. Elements of conchology, or an introduction to the knowledge of shells. B. White, London, 318 p.Google Scholar
Dacque, E. 1905. Beiträge zur Geologie des Somalilandes, 2. Teil. Oberer Jura. Beiträge zur Paläontologie und Geologie Österreich-Ungarns und des Orients, 17:119160.Google Scholar
Damborenea, S. E., Manceñido, M. O., and Riccardi, A. C. 1979. Estudio paleontológico de la Formación Chachao, informe final inédito. Unpublished Report, Yacimientos Petrolíferos Fiscales, Buenos Aires, 152 p.Google Scholar
Dimitrova, N. 1974. Crétacé Inférieur (Gastropoda et Bivalvia). Les fossiles de Bulgarie, Académie Bulgare des Sciences, 4b:1258. (In Bulgarian) Google Scholar
Drushchits, V. V. and Kudryavtsev, M. P. 1960. Atlas of the Lower Cretaceous fauna of the Northern Caucasus and Crimea. Trudy VNIIGaz, Moscow, 800 p. (In Russian) Google Scholar
Etayo-Serna, F. 1985. Paleontología estratigráfica del Sistema Cretácico en la Sierra Nevada del Cocuy. Contribuciones Proyecto Cretácico. Publicaciones geológicas especiales INGEOMINAS, 16:147.Google Scholar
Finlay, H. J. and Marwick, J. 1937. The Wangaloan and associated molluscan faunas of Kaitangata, Green Island Subdivision. Paleontological Bulletin of the New Zealand Geological Survey, 15:1140.Google Scholar
Fischer, J.-C. and Weber, C. 1997. Gastropodes jurassiques. In Fischer, J.-C. (ed.), Révision critique de la paléontologie française d'Alcide d'Orbigny, vol. 2. V. Masson, Paris, 300 p.Google Scholar
Fritzsche, C. H. 1924. Neue kreidefaunen aus Südamerika (Chile, Bolivia, Peru, Columbia). In Steinmann, G. (ed.), Beiträge zur Geologie und Paläontologie von Südamerika, vol. 27. Neues Jahrbuch für Mineralogie, Geologie und Paläontologie, Beilage-Band, 50:156, 313–334.Google Scholar
Gabb, W. M. 1864. Description of the Cretaceous fossils. Geological Survey of California, Palæontology, 1:57243.Google Scholar
Gabb, W. M. 1868. An attempt at a revision of the two families Strombidae and Aporrhaidae. American Journal of Conchology, 4:137149.Google Scholar
Gardner, J. S. 1875. On the Gault Aporrhaidae. Geological Magazine New Series, Decade II, 2:4957; 124–130; 198–203; 291–298; 392–400.Google Scholar
Gerhardt, K. 1897. Beiträge zur Kenntniss der Kreideformation in Columbien. Neues Jahrbuch für Mineralogie, Geologie und Paläontologie, 11:118208.Google Scholar
Gill, T. 1870. On the Pterocerae of Lamarck, and their mutual relations. American Journal of Conchology, 5:120139.Google Scholar
Golovinova, M. A. and Korotkov, V. A. 1986. On the revision of the genus Leviathania (Gastropoda). Paleontological Journal, 1:115117.Google Scholar
Gray, J. E. 1850. Figures of molluscous animals selected from various authors. Etched for the use of students by M. E. Gray, vol. 4. Longman, Brown, Green and Longmans, London, 219 p.Google Scholar
Gründel, J. 1998. Archaeo- und Caenogastropoda aus dem Dogger Deutschlands und Nordpolens. Stuttgarter Beiträge zur Naturkunde serie B (Geologie und Paläontologie), 260:139.Google Scholar
Gründel, J. 2001. Neritimorpha und weitere Caenogastropoda (Gastropoda) aus dem Dogger Norddeutschlands und des nordwestlichen Polens. Berliner geowissenschaftliche Abhandlungen, E36:4599.Google Scholar
Gründel, J. 2005. Gastropoden aus dem oberen Callovium (Lamberti-Zone) der Tongrube Cubki bei Saratov, Russische Plattform. Zitteliana A, 45:6585.Google Scholar
Gründel, J. and Parent, H. 2001. Lower and middle Tithonian marine gastropods from the Neuquén-Mendoza Basin, Argentina. Boletín del Instituto de Fisiografía y Geología, 71:1318.Google Scholar
Gründel, J. and Parent, H. 2006. Marine Jurassic gastropods of Argentina. III. Lower and Middle Tithonian of Picún Leufú and Cerro Lotena. Neues Jahrbuch für Geologie und Paläontologie, Monatshefte, 8:503512.Google Scholar
Gründel, J., Nützel, A., and Schulbert, C. 2009. Toarctocera (Gastropoda, Aporrhaidae): a new genus from the Jurassic (Toarcian/Aalenian) of South Germany and the early evolutionary history of the family Aporrhaidae. Paläontologische Zeitschrift, 83:533543.CrossRefGoogle Scholar
Haupt, O. 1907. Beiträge zur Fauna des oberen Malm und der unteren Kreide in der argentinischen Cordillere. Neues Jahrbuch für Mineralogie, Geologie und Paläontologie, 23:187236.Google Scholar
Holmberg, E. 1976. Descripción de la hoja geológica 32 c, Buta Ranquil, provincia del Neuquén. Boletín del Servicio Geológico Nacional, 152, 90 p.Google Scholar
Howarth, M. K. and Morris, N. J. 1998. The Jurassic and Lower Cretaceous of Wadi Hajar, southern Yemen. Bulletin of the Natural History Museum (Geology), 54:132.Google Scholar
Hudson, R. G. S. 1958. The Upper Jurassic faunas of Southern Israel. Geological Magazine, 95:415425.CrossRefGoogle Scholar
Imlay, R. W. 1940. Neocomian faunas of northern Mexico. Bulletin of the Geological Society of America, 51:117190.CrossRefGoogle Scholar
Jaitly, A. K. and Szabó, J. 2007. Contributions to the Jurassic of Kachchh, western India. The gastropod fauna. Part III: further Caenogastropoda and Opisthobranchia. Fragmenta Palaeontologica Hungarica, 24–25:7782.Google Scholar
Jaworski, E. 1938. Gasterópodos del Cretácico Inferior de Colombia, p. 109121. In Scheibe, E.A. (ed.), Estudios geológicos y paleontológicos sobre la Cordillera Oriental de Colombia, parte 3. República de Colombia, Ministerio de Industrias y Trabajo, Departamento de Minas y Petróleos. P. and G. Gärtner, Bogotá, 59 p.Google Scholar
Jurgan, H. 1974. Die marine Kalkfolge der Unterkreide in der Quebrada El Way-Antofagasta, Chile. Geologische Rundschau, 63:490516.Google Scholar
Kaim, A. 2004. The evolution of conch ontogeny in Mesozoic open sea gastropods. Palaeontologia Polonica, 62:1183.Google Scholar
Kase, T. 1984. Early Cretaceous marine and brackish-water Gastropoda from Japan. National Science Museum, Tokyo, 263 p.Google Scholar
Kase, T. and Maeda, H. 1980. Early Cretaceous Gastropoda from the Choshi District, Chiba Prefecture, Central Japan. Transactions and Proceedings of the Palaeontological Society of Japan, New Series, 118:291324.Google Scholar
Kaunhowen, F. 1898. Die Gastropoden der Maestrichter Kreide. Palaontologische Abhandlungen, Neue Folge, 4:1132.Google Scholar
Kiel, S. 2006. New and little-known gastropods from the Albian of the Mahajanga Basin, northwestern Madagascar. Journal of Paleontology, 80:455476.Google Scholar
Kiel, S. and Bandel, K. 2002. About some aporrhaid and strombid gastropods from the Late Cretaceous. Paläontologische Zeitschrift, 76:8397.Google Scholar
Kollmann, H. A. 1978. Gastropoden aus den Losensteiner Schichten der Umgebung von Losenstein (Oberösterreich). 2. Teil: Naticidae, Colombellinidae, Aporrhaidae, Ceritellidae, Epitoniidae (Mesogastropoda). Annalen des Naturhistorischen Museums in Wien, 81:173201.Google Scholar
Kollmann, H. A. 2002. Gastropods from the Lower Cretaceous of Vorarlberg, Austria. A systematic review. Annalen des Naturhistorischen Museums in Wien, 103A:2373.Google Scholar
Kollmann, H. A. 2005. Gastropodes crétacés. In Fischer, J.-C. (ed.), Révision critique de la Paléontologie Française d'Alcide d'Orbigny, vol. 3. Blackhuys Publishers, Leiden, 239 p.Google Scholar
Kollmann, H. A. 2009. A Late Cretaceous Aporrhaidae-dominated gastropod assemblage from the Gosau Group of the Pletzach Alm near Kramsach (Tyrol, Austria). With an appendix on the taxonomy of Mesozoic Aporrhaidae and their position in the superfamily Stromboidea. Annalen des Naturhistorischen Museums in Wien, 111A:3372.Google Scholar
Kühn, O. 1929. Beiträge zur Palaeontologie und Stratigraphie von Oman (Ost Arabien). Annalen des (K.K.) Naturhistoischen (Hof) Museums, 3:1333.Google Scholar
Lazo, D. G., Cichowolski, M., Rodríguez, D. L., and Aguirre-Urreta, M. B. 2005. Lithofacies, palaeoecology and palaeoenvironments of the Agrio Formation, Lower Cretaceous of the Neuquén Basin, Argentina, p. 295315. In Veiga, G. D., Spalletti, L. A., Howell, J. A. and Schwarz, E. (eds.), The Neuquén Basin, Argentina: a case study in sequence stratigraphy and Basin dynamics. Geological Society, London, Special Publication 252.Google Scholar
Leymerie, M. A. 1842. Suite du mémoire sur le Terrain Crétacé du departement de l'Aube, 2ème partie. Mémoires de la Société géologique de France, 1ère série, tome 5, mémoire n° 1. Langlois et Leclercq, Paris, 34 p.Google Scholar
Loch, J. D. 1989. A new genus of aporrhaid gastropod from Southern California. Journal of Paleontology, 63:574577.Google Scholar
Mariñelarena, M. P. de. 1959. Sobre una nueva Trigonia del Titoniense de Aguada del Sapo en la provincia de Neuquén. Notas del Museo de La Plata, Paleontología, 19:181189.Google Scholar
Marwick, J. 1924. The Struthiolariidae. Transactions and Proceedings of the New Zealand Institute, 55:161190.Google Scholar
Meek, F. B. 1864. Check list of invertebrate fossils of North America; Cretaceous and Jurassic. Smithsonian Miscellaneous Collection, 7:140.Google Scholar
Morton, J. 1997. The Strombacea re-visited. I, Struthiolaria and Aporrhais . Poirieria, 20:113.Google Scholar
Mourgues, F. A. 2008. El registro de amonites del centro-norte de Chile en el marco de la geodinámica del margen Pacífico de Gondwana durante el Cretácico Temprano. 1er Simposio Paleontología en Chile, Santiago, Actas, p. 4348.Google Scholar
Mourier, T., Bengtson, P., Bonhomme, M., Buge, E., Cappetta, H., Crochet, J. Y., Feist, M., Hirsch, K. F., Jaillard, E., Laubacher, G., Lefranc, J. P., Moullade, M., Noblet, C., Pons, D., Rey, J., Sigé, B., Tambareau, Y., and Taquet, P. 1988. The upper Cretaceous–lower Tertiary marine to continental transition in the Bagua Basin, northern Peru: paleontology, biostratigraphy, radiometry, correlations. Newsletters on Stratigraphy, 19:143177.Google Scholar
Müller, G. W. 1898. Die Molluskenfauna des Untersenon von Braunschweig und Ilsede. I. Lamellibranchiaten und Glossophoren. Abhandlungen der Königlich preussischen geologischen Landesanstalt, neue Folge, 25:1142.Google Scholar
Nielsen, S. N. 2005. Cenozoic Strombidae, Aporrhaidae, and Struthiolariidae (Gastropoda: Stromboidea) from Chile: their significance to the interpretation of Southeast Pacific biogeography and climate. Journal of Paleontology, 79:1,1201,130.Google Scholar
Nullo, F. E., Panza, J. L., and Blasco, G. 1999. Jurásico y Cretácico de la Cuenca Austral. Geología Argentina, Anales del Instituto de Geología y Recursos Minerales, 29:528535.Google Scholar
Palma, R. M., Kietzmann, D. A., Adamonis, S., and Gómez, J. L. 2009. Oxfordian reef architecture of the La Manga Formation, Neuquén Basin, Mendoza province, Argentina. Sedimentary Geology, 221:127140.Google Scholar
Pérez, E. and Reyes, R. 1989. Dos nuevas especies del género Paulckella Cooper et al. 1989 (Bivalvia; Trigoniidae), del Cretácico Inferior, norte de Chile. Revista Geológica de Chile, 16:217227.Google Scholar
Perron, F. E. 1978. Seasonal burrowing behavior and ecology of Aporrhais occidentalis (Gastropoda: Strombacea). Biological Bulletin, 154:463471.Google Scholar
Pictet, F.-J. and Campiche, G., 1864. Description des fossiles du terrain Crétacé des environs de Sainte-Croix. Deuxième partie, 11ème et 12ème livraisons. H. Georg, Genève, p. 525752.Google Scholar
Piette, M. 1876. Note sur les coquilles ailées des mers jurassiques. H. Jacob, Laon, 7 p.Google Scholar
Piette, M. 1891. Paléontologie française. Terrains jurassiques. Tome 3, Gastéropodes. G. Masson, Paris, 535 p.Google Scholar
Popenoe, W. P. 1983. Cretaceous Aporrhaidae from California: Aporrhainae and Arrhoginae. Journal of Paleontology, 57:742765.Google Scholar
Rafinesque, C. S. 1815. Analyse de la nature, ou tableau de l'universe des corps organisées. L'auteur and J. Barravecchia, Palermo 224 p.Google Scholar
Rawson, P. F. and Aguirre-Urreta, M. B. 2012. Lower Cretaceous ammonites from the Neuquén Basin, Argentina: the Hauterivian genus Spitidiscus . Cretaceous Research, 33:97105.Google Scholar
Reiner, W. 1968. Callovian gastropods from Hamakhtesh Hagadol (southern Israel). Israel Journal of Earth Sciences, 17:171198.Google Scholar
Roy, K. 1994. Effects of the Mesozoic marine revolution on the taxonomic, morphologic, and biogeographic evolution of a group; aporrhaid gastropods during the Mesozoic. Paleobiology, 20:274296.Google Scholar
Savazzi, E. 1991. Constructional morphology of strombid gastropods. Lethaia, 24:311331.Google Scholar
Schwarz, E., Spalletti, L. A., and Veiga, G. D. 2011. La Formación Mulichinco (Cretácico Temprano) en la Cuenca Neuquina, p. 131144. In Leanza, H., Arregui, C., Carbone, O., Danieli, J. C. and Vallés, J. M. (eds.), Geología y recursos naturales de la provincia del Neuquén. Relatorio del 18vo Congreso Geológico Argentino. Asociación Geológica Argentina, Buenos Aires.Google Scholar
Scopoli, J. A. 1777. Introductio ad historiam naturalem sistems genera lapidum, plantarum, et animalium hactenus detecta, caracteribus essentialibus donata, in tribus divisa, subinde ad leges naturae. Gerle, Prague, 506 p.Google Scholar
Sharpe, D. 1849. On Tylostoma, a proposed genus of gasteropodous mollusks. Quarterly Journal of the Geological Society of London, 5:376380.Google Scholar
Shattuck, G. B. 1903. The Mollusca of the Buda Limestone, with an appendix on the corals of the Buda Limestone, by Thomas Wayland Vaughan. Bulletin of the United States Geological Survey, 205:194.Google Scholar
Sinzow, I. F. 1880. Description of some species of Mesozoic fossils from Simbirsk and Saratov regions, Zap. Mémoires de la Société des Naturalistes de Nouvelle-Russie (Odessa), 7:112.Google Scholar
Smith, A. G., Smith, D. G., and Funnell, B. M. 1994. Atlas of Mesozoic and Cenozoic Coastlines. Cambridge University Press, Cambridge, 109 p.Google Scholar
Sohl, N. F. 1960. Archaeogastropoda, Mesogastropoda and stratigraphy of the Ripley Owl Creek, and Prairie Bluff Formation. United States Geological Survey Professional Papers, 331A:1151.Google Scholar
Sowerby, J. 1823. The mineral conchology of Great Britain; or, coloured figures and descriptions of those remains of testaceous animals or shells which have been preserved at various times and depths in the earth. Vol. 4. Arding and Merret, London, 160 p.Google Scholar
Sowerby, J. de C. 1823. The mineral conchology of Great Britain; or, coloured figures and descriptions of those remains of testaceous animals or shells which have been preserved at various times and depths in the earth. Vol. 5. Arding and Merret, London, 168 p.Google Scholar
Spalletti, L. A., Poiré, D. G., Pirrie, D., Matheos, S. D., and Doyle, P. 2001. Respuesta sedimentológica a cambios en el nivel de base en una secuencia mixta clástica-carbonática del Cretácico de la Cuenca Neuquina, Argentina. Revista de la Sociedad Geológica España, 14:5774.Google Scholar
Squires, R. L. and Saul, L. R. 2004. Uncommon Cretaceous naticiform gastropods from the Pacific Slope of North America. The Veliger, 47:2137.Google Scholar
Stanton, T. W. 1901. The marine Cretaceous invertebrates, p. 143. In Scott, W. B. (ed.), Reports of the Princeton University expeditions to Patagonia, 1896–1899. Vol. IV, Paleontology I, pt. I. University of Princeton, New Jersey.Google Scholar
Steinmann, G. and Wilckens, O. 1908. Kreide-und Tertiärfossilien aus den Magellansländern gesammelt von der schwedischen Expedition 1895–1897. Arkiv för Zoologi, 4:1119.Google Scholar
Stilwell, J. D. 2003. Diversity, distribution, and evolutionary history of the Austral, Late Cretaceous to Eocene, gastropod Struthioptera (Stromboidea: Aporrhaidae). Journal of the Royal Society of New Zealand, 33:315340.Google Scholar
Tate, R. 1865. On the so called Rostellariae of the Cretaceous rocks, with a descriptive catalogue of the British species. Geological and Natural History Repertory, 1:93102.Google Scholar
Tavera, J. 1956. Fauna del Cretácico Inferior de Copiapó. Anales de la Facultad de Ciencias Físicas y Matemáticas de Santiago de Chile, 13:205216.Google Scholar
Thomas, M. P. and Peron, A. 1889. Exploration scientifique de la Tunisie-Description des mollusques fossiles des terrains Crétacés de la région sud des Haut-Plateaux de la Tunisie recueillis en 1885 et 1886. V. Masson, Paris, 103 p.Google Scholar
Thomson, M. R. A. 1971. Gastropoda from the Lower Cretaceous sediments of south-eastern Alexander Island. Bulletin of the British Antarctic Survey, 25:4558.Google Scholar
von der Osten, E. 1957. A fauna from the Lower Cretaceous Barranquin Formation of Venezuela. Journal of Paleontology, 31:571590.Google Scholar
von Hillebrandt, A. 1970. Die Kreide in der Zentralkordillere östlich von Lima (Peru, Südamerika). Geologische Rundschau, 59:1,1801,203.Google Scholar
Weaver, C. E. 1931. Paleontology of the Jurassic and Cretaceous of West Central Argentina. Memoirs of the University of Washington, 1, 595 p.Google Scholar
Wenz, W. 1940. Gastropoda, Teil I. In Schindewolf, O. H. (ed.). Handbuch der Paläozoologie, vol. 6. Borntraeger, Berlin, 1639 p.Google Scholar
Wilckens, O. 1907. Die Lamellibranchiaten, Gastropoden, etc., der oberen Kreide Südpatagoniens. Berichten der Naturforschenden Gesellschaft zu Freiburg im Breisgau, 50:97166.Google Scholar
Wilckens, O. 1910. Die Anneliden, Bivalven und Gastropoden der Antarktischen Kreideformation. Wissenschaftliche Ergebnisse der Schwedischen Südpolar-Expedition 1901–1903 unter Leitung von Dr. Otto Nordenskjold, 3:1132.Google Scholar
Wilckens, O. 1921. Beiträge zur Palaöntologie von Patagonien. Neues Jahrbuch für Mineralogie, Geologie und Paläontologie, Abhandlungen 1921, 1:114.Google Scholar
Wilckens, O. 1922. The Upper Cretaceous Gastropods of New Zealand. Palaeontological Bulletin of the New Zealand Geological Survey Branch, 9:142.Google Scholar
Wollemann, A. 1903. Die Fauna des mittleren Gaults von Algermissen. Jahrbuch der Königlischen Preußischen Geologischen Landesanstalt und Bergakademie, 24, 2242.Google Scholar
Yabe, H. and Nagao, T. 1925. New or little-known Cretaceous fossils from North Saghalin (Lamellibranchiata and Gastropoda). The science reports of the Tôhoku Imperial University, Sendai, Japan, Series 2 (Geology), 7:111124.Google Scholar
Yonge, C. M. 1937. The biology of Aporrhais pes-pelicani (L.) and Aporrhais serresiana (Mich.). Journal of the Marine Biological Association of the United Kingdom, 21:687704.Google Scholar
Zinsmeister, W. J. 1977. Note on a new occurence of the southern hemisphere aporrhaid gastropod Struthioptera Finlay and Marwick on Seymour Island, Antarctica. Journal of Paleontology, 51:399404.Google Scholar
Zinsmeister, W. J. 1982. Late Cretaceous–early Tertiary molluscan biogeography of the southern circum-Pacific. Journal of Paleontology, 56:84102.Google Scholar
Zinsmeister, W. J. and Camacho, H. H. 1980. Late Eocene Struthiolariidae (Mollusca. Gastropoda) from Seymour Island, Antarctic Peninsula and their significance to the biogeography of early Tertiary shallow water faunas of the Southern Hemisphere. Journal of Paleontology, 54:114.Google Scholar
Zinsmeister, W. J. and Griffin, M. 1995. Late Cretaceous and Tertiary aporrhaid gastropods from the southern rim of the Pacific Ocean. Journal of Paleontology, 69:692702.Google Scholar
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