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19 - Sciuravidae

from Part V - Glires

Published online by Cambridge University Press:  07 September 2010

Anne H. Walton
Affiliation:
Pratt Museum of Natural History, Amherst College, MA, USA
Read M. Porter
Affiliation:
Pratt Museum of Natural History, Amherst College, MA, USA
Christine M. Janis
Affiliation:
Brown University, Rhode Island
Gregg F. Gunnell
Affiliation:
University of Michigan, Ann Arbor
Mark D. Uhen
Affiliation:
University of Alabama, Birmingham
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Print publication year: 2008

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References

Black, C. C. (1965). Fossil mammals from Montana. Part 2. Rodents from the early Oligocene Pipestone Springs local fauna. Annals of the Carnegie Museum, 38, 1–48.Google Scholar
Black, C. C. and Stephens, J. R. III (1973). Rodents from the Paleogene of Guanajuato, Mexico. Occasional Papers of the Museum of Texas Technical University, 14, 1–10.Google Scholar
Black, C. C. and Sutton, J. F. (1984). Paleocene and Eocene rodents of North America. Carnegie Museum of Natural History Special Publication, 9, 67–84.Google Scholar
Bonaparte, C. L. (1845). Specchio generale dei sistemi erpetelogico ed anfibiologico. Atti Congresso Scienzia Italia, 6, 376–8.Google Scholar
Bown, T. M. (1982). Geology, paleontology, and correlation of Eocene volcaniclastic rocks, Southeast Absaroka Range, Hot Springs County, Wyoming. United States Geological Survey, Professional Paper, 1201–A, 1–75.Google Scholar
Brandt, J. F. (1855). Beitrage zur nähern Kenntniss der Säugethiere Russlands. Mémoires de l'Academie des Sciences Impériale de St. Pétersbourg, 6, 1–365.Google Scholar
Burke, J. J. (1937). A new Sciuravus from Utah. Annals of the Carnegie Museum, 27, 1–9.Google Scholar
Chiment, J. J. and Korth, W. W. (1996). A new genus of eomyid rodent (Mammalia) from the Eocene (Uintan–Duchesnean) of southern California. Journal of Vertebrate Paleontology, 16, 116–24.CrossRefGoogle Scholar
Dawson, M. R. (1964). Late Eocene rodents (Mammalia) from Inner Mongolia. American Museum Novitates, 2191, 1–15.Google Scholar
Dawson, M. R. (1966). Additional Late Eocene rodents (Mammalia) from the Uinta Basin, Utah. Annals of the Carnegie Museum, 38, 97–114.Google Scholar
Dawson, M. R. (1968). Middle Eocene rodents (Mammalia) from northeastern Utah. Annals of the Carnegie Museum, 39, 327–70.Google Scholar
Dawson, M. R. (1977). Late Eocene rodent radiations: North America, Europe and Asia. Géobios, Mémoire Spécial, 1, 195–209.CrossRefGoogle Scholar
Dawson, M. R. and Tong, Y.-S. (1998). New material of Pappocricetodon schaubi, an Eocene rodent (Mammalia: Cricetidae) from the Yuanqu Basin, Shanxi Province, China. Bulletin of the Carnegie Museum of Natural History, 34, 278–85.Google Scholar
Dawson, M. R., Krishtalka, L., and Stucky, R. K. (1990). Revision of the Wind River faunas, early Eocene of central Wyoming. Part 9. The oldest known hystricomorphous rodent (Mammalia: Rodentia). Annals of the Carnegie Museum, 59, 135–47.Google Scholar
Depéret, C. and Douxami, H. (1902). Les vertébrés oligocènes de Pyrimont-Challonges (Savoie). Abhandlungen Schweizerischen Paläontologischen Gesellschaft, 29, 1–91.Google Scholar
Emry, R. J. and Korth, W. W. (1989). Rodents of the Bridgerian Elderberry Canyon local fauna of eastern Nevada. Smithsonian Contributions to Paleobiology, 67, 1–14.CrossRefGoogle Scholar
Fahlbusch, V. (1973). Die stammesgeschichtlichen Beziehungen zwischen dem Eomyiden (Mammalia, Rodentia) Nordamerikas und Europas. Mitteilungen Bayerische Staatsammlung für Palaeontolgie und Historische Geologie, München, 13, 141–75.Google Scholar
Fahlbusch, V. (1979). Eomyidae–Geschichte einer Säugetierfamilie. Paläontologische Zeitschrift, 53, 88–97.CrossRefGoogle Scholar
Fahlbusch,, V. (1985). Origin and evolutionary relationships among Geomyoids. In Evolutionary Relationships Among Rodents: A Multidisciplinary Analysis, ed. Luckett, W. P. and Hartenberger, J.-L., pp. 617–29. New York: Plenum Press.Google Scholar
Ferrusquía-Villafranca,, I. (1989). A new rodent genus from central Mexico and its bearing on the origin of the Caviomorpha. In Papers on Fossil Rodents in Honor of Albert Elmer Wood, ed. Black, C. C. and Dawson, M. R., pp. 91–117. Los Angeles, CA: Natural History Museum of Los Angeles County.Google Scholar
Flanagan, K. M. (1986). Early Eocene rodents from the San Jose Formation, San Juan Basin, New Mexico. [In Vertebrates, Phylogeny, and Philosophy, ed. Flanagan, K. M. and Lillegraven, J. A..] Contributions to Geology, University of Wyoming Special Paper, 3, 197–220.Google Scholar
Flynn,, L. J., Jacobs,, L. L., and Lindsay,, E. H. (1985). Problems in muroid phylogeny: relationship to other rodents and origin of major groups. In Evolutionary Relationships Among Rodents: A Multidisciplinary Analysis, ed. Luckett, W. P. and Hartenberger, J.-L., pp. 589–616. New York: Plenum Press.Google Scholar
Gazin, C. L. (1952). The lower Eocene Knight Formation of western Wyoming and its mammalian faunas. Smithsonian Miscellaneous Collections, 117, 1–49.Google Scholar
Gazin, C. L. (1961). New sciuravid rodents from the Lower Eocene Knight Formation of western Wyoming. Proceedings of the Biological Society of Washington, 74, 193–4.Google Scholar
Grassé, P.-P. (ed.). (1955). Traité de Zoologie.Vol. XVII, 1–2: Mammifères. Les Ordres: Anatomie, Éthologie, Systématique. Paris: Masson.Google Scholar
Guthrie, D. A. (1971). The mammalian fauna of the Lost Cabin Member, Wind River Formation (Lower Eocene) of Wyoming. Annals of the Carnegie Museum, 43, 47–113.Google Scholar
Hartenberger, J.-L. (1998). Déscription de la radiation des Rodentia (Mammalia) du Paléocène supérieur au Miocène; incidences phylogénétiques. Comptes Rendus de l'Académie des Sciences, Paris, Sciences de la Terre et des Planètes, 326, 439–44.Google Scholar
Hartenberger, J.-L., Dashzeveg, D., and Martin, T. (1997). What is Ivantonia efremovi (Rodentia, Mammalia)?Paläontologische Zeitschrift, 71, 135–43.CrossRefGoogle Scholar
Ivy, L. D. (1990). Systematics of late Paleocene and early Eocene Rodentia (Mammalia) from the Clarks Fork Basin, Wyoming. Contributions from the Museum of Paleontology, University of Michigan, 28, 21–70.Google Scholar
Kelly, T. S. and Whistler, D. P. (1994). Additional Uintan and Duchesnean (Middle and Late Eocene) mammals from the Sepse Formation, Simi Valley, California. Contributions in Science, Los Angeles County Museum of Natural History, 439, 1–29.Google Scholar
Korth, W. W. (1984). Earliest Tertiary evolution and radiation of rodents in North America. Bulletin of the Carnegie Museum of Natural History, 24, 1–71.Google Scholar
Korth, W. W. (1992). Cylindrodonts (Cylindrodontidae, Rodentia) and a new genus of eomyid, Paranamatomys (Eomyidae, Rodentia), from the Chadronian of Sioux County, Nebraska. Transactions of the Nebraska Academy of Sciences, 19, 75–82.Google Scholar
Korth, W. W. (1994). The Tertiary Record of Rodents in North America. New York: Plenum Press.CrossRefGoogle Scholar
Landry, S. O. (1999). A proposal for a new classification and nomenclature for the Glires (Lagomorpha and Rodentia). Mitteilungen des Museum für Naturkunde Berlin, Zoologische Reihe, 75, 283–316.Google Scholar
Lavocat,, R. and Parent,, J.-P. (1985). Phylogenetic analysis of middle ear features in fossil and living rodents. In Evolutionary Relationships Among Rodents: A Multidisciplinary Analysis, ed. Luckett, W. P. and Hartenberger, J.-L., pp. 333–54. New York: Plenum Press.Google Scholar
Li, C.-K. (1963). Paramyid and sciuravids from North China. Vertebrata Palasiatica, 7, 151–60.Google Scholar
Lillegraven, J. A. (1977). Small rodents (Mammalia) from Eocene deposits of San Diego County, California. Bulletin of the American Museum of Natural History, 158, 225–61.Google Scholar
Lindsay, E. (1968). Rodents from the Hartman Ranch Local Fauna. California. Contributions from the University of California Museum of Paleontology, 6, 1–22.Google Scholar
Loomis, F. B. (1907). Wasatch and Wind River rodents. American Journal of Science, 4, 123–30.CrossRefGoogle Scholar
Marsh, O. C. (1871). Notice of some new fossil mammals and birds from the Tertiary formations of the West. American Journal of Science, 2, 120–7.CrossRefGoogle Scholar
Marsh, O. C. (1872). Preliminary description of new Tertiary mammals. American Journal of Science, 4, 202–24.CrossRefGoogle Scholar
Matthew, W. D. (1910). On the osteology and relationships of Paramys, and the affinities of Ischyromyidae. Bulletin of the American Museum of Natural History, 28, 43–72.Google Scholar
Miller, G. S. and Gidley, J. W. (1918). Synopsis of the supergeneric groups of Rodents. Journal of the Washington Academy of Sciences, 8, 431–48.CrossRefGoogle Scholar
Nelson, M. E. (1974). Middle Eocene rodents (Mammalia) from southwestern Wyoming. Contributions to Geology, University of Wyoming, 13, 1–10.Google Scholar
Patterson, B. and Wood, A. E. (1982). Rodents from the Deseadan Oligocene of Bolivia and the relationships of the Caviomorpha. Bulletin of the Museum of Comparative Zoology, 149, 371–543.Google Scholar
Peterson, O. A. (1919). Report upon the material discovered in the Upper Eocene of the Uinta Basin by Earl Douglas in the years 1908–1909 and by O. A. Peterson in 1912. Annals of the Carnegie Museum, 12, 40–168.Google Scholar
Porter, R. (2001). A cladistic analysis of the Sciuravidae (Mammalia: Rodentia) and implications for rodent phylogeny. Senior Thesis, Amherst College, Amherst.
Schaub, S. (1925). Die hamsterartigen Nagetiere des Tertiärs und ihre lebenden Verwandten. Abhandlungen Schweizerischen Paläontologischen Gesellschaft, 45, 1–114.Google Scholar
Shevyreva, N. S. (1971). The first find of Eocene rodents in the USSR. Bulletin of the Academy of Sciences of the Georgian SSR, Tblisi, 61, 745–7. [In Russian.]Google Scholar
Shevyreva, N. S. (1972). New rodents in the Paleogene of Mongolia and Kazakhstan. Paleontological Journal of Moscow, 3, 134–45. [In Russian.]Google Scholar
Silcox,, M. T. and Rose,, K. D. (2001). Unusual vertebrate microfaunas from the Willwood Formation, early Eocene of the Bighorn Basin, Wyoming. In Eocene Biodiversity: Unusual Occurrences and Rarely Sampled Habitats, ed. Gunnell, G. F., pp. 131–64. New York: Kluwer Academic/Plenum.Google Scholar
Simpson, G. G. (1945). The principles of classification and a classification of mammals. Bulletin of the American Museum of Natural History, 85, 1–350.Google Scholar
Stehlin, H. G. and Schaub, S. (1951). Die Trigonodontie der simplicidentaten Nager. Schweizerische Paläontologische Abhandlungun, 67, 1–385.Google Scholar
Storer, J. E. (1987). Dental evolution and radiation of Eocene and early Oligocene Eomyidae (Mammalia, Rodentia) of North America, with new material from the Duchesnean of Saskatchewan. [In Papers in Vertebrate Paleontology in Honor of Morton Green, ed. Martin, J. E. and Ostrander, G. E..] Dakoterra, 3, 108–17.Google Scholar
Taylor, W. P. (1914). Outline of the history of the Castoridae. Proceedings Fifth Annual Meeting of the Pacific Coast Section of the Paleontological Society, p. 167.Google Scholar
Tong, Y.-S. (1992). Pappocricetodon, a pre-Oligocene cricetid genus (Rodentia) from central China. Vertebrata Palasiatica, 30, 1–16.Google Scholar
Tong, Y- S. and Dawson, M. R. (1995). Early Eocene rodents (Mammalia) from Shandong Province, People's Republic of China. Annals of the Carnegie Museum, 64, 51–63.Google Scholar
Troxell, E. L. (1923a). Pauromys perditus, a small rodent. American Journal of Science, 5, 155–6.CrossRefGoogle Scholar
Troxell, E. L. (1923b). The Eocene rodents Sciuravus and Tillomys. American Journal of Science, 5, 383–96.CrossRefGoogle Scholar
Vianey-Liaud,, M. (1985). Possible evolutionary relationships among Eocene and lower Oligocene rodents of Asia, Europe and North America. In Evolutionary Relationships Among Rodents: A Multidisciplinary Analysis, ed. Luckett, W. P. and Hartenberger, J.-L., pp. 277–309. New York: Plenum Press.Google Scholar
Wahlert, J. H. (1974). The cranial foramina of protrogomorphous rodents: an anatomical and phylogenetic study. Bulletin of the Museum of Comparative Zoology, 146, 363–410.Google Scholar
Wahlert, J. H. (1977). Cranial foramina and relationships of Eutypomys (Rodentia, Eutypomyidae). American Museum Novitates, 2626, 1–8.Google Scholar
Walsh, S. L. (1991). Eocene mammal faunas of San Diego County. In Eocene Geologic History San Diego Region, ed. Abbott, P. L. and May, J. A., pp. 161–78. Fullerton, CA: Pacific Section of the Society for Sedimentary Geology.Google Scholar
Walsh,, S. L. (1996). Middle Eocene mammal faunas of San Diego County, California. In The Terrestrial Eocene–Oligocene Transition in North America, ed. Prothero, D. R. and Emry, R. J., pp. 75–119. Cambridge, UK: Cambridge University Press.Google Scholar
Walsh, S. L. (1997). New specimens of Metanoiamys, Pauromys, and Simimys (Rodentia: Myomorpha) from the Uintan (middle Eocene) of San Diego County, California, and comments on the relationships of selected Paleogene Myomorpha. Proceedings of the San Diego Society of Natural History, 32, 1–20.Google Scholar
Walton, A. H. (1993a). A new genus of eutypomyid (Mammalia: Rodentia) from the middle Eocene of the Texas Gulf Coast. Journal of Vertebrate Paleontology, 13, 262–6.CrossRefGoogle Scholar
Walton, A. H. (1993b). Pauromys and other small Sciuravidae (Mammalia: Rodentia) from the middle Eocene of Texas. Journal of Vertebrate Paleontology, 13, 243–61.CrossRefGoogle Scholar
Wang, B.-Y. (1997). The mid-Tertiary Ctenodactylidae (Rodentia, Mammalia) of eastern and central Asia. Bulletin of the American Museum of Natural History, 234, 1–88.Google Scholar
Wang, B.-Y. and Dawson, M. R. (1994). A primitive cricetid (Mammalia: Rodentia) from the middle Eocene of Jiangsu Province, China. Annals of the Carnegie Museum, 63, 239–56.Google Scholar
Wang, B.-Y. and Li, C.-K. (1990). First Paleogene mammalian fauna from northeast China. Vertebrata Palasiatica, 28, 165–205.Google Scholar
Weber, M. C. W. (1904). Die Säugetiere. Einführing in die Anatomie und Systematik der Recenten und Fossilen Mammalia. Jena.CrossRefGoogle Scholar
Westgate, J. W. and Gee, C. T. (1990). Paleoecology of a middle Eocene mangrove biota (vertebrates, plants, and invertebrates) from southwest Texas. Palaeogeography, Palaeoclimatology, Palaeoecology, 78, 163–77.CrossRefGoogle Scholar
Wilson, J. A. and Runkel, A. C. (1991). Prolapsus, a large sciuravid rodent, and new eomyids from the late Eocene of Trans-Pecos Texas. Pearce-Sellards Series, Texas Memorial Museum, 48, 1–30.Google Scholar
Wilson, R. W. (1938a). Review of some rodent genera from the Bridger Eocene. Part I. American Journal of Science, 35, 123–37.CrossRefGoogle Scholar
Wilson, R. W. (1938b). Review of some rodent genera from the Bridger Eocene. Part II. American Journal of Science, 35, 207–22.CrossRefGoogle Scholar
Wilson, R. W. (1938c). Review of some rodent genera from the Bridger Eocene. Part III. American Journal of Science, 35, 297–304.CrossRefGoogle Scholar
Wilson, R. W. (1940). Two new Eocene rodents from California. American Journal of Science, 34, 85–95.Google Scholar
Wilson, R. W. (1949). Early Tertiary rodents of North America. Carnegie Institution of Washington, Contributions to Paleontology, 584, 59–83.Google Scholar
Wilson, R. W. (1986). The Paleogene record of the rodents: fact and interpretation. [In Vertebrates, Phylogeny, and Philosophy, ed. Flanagan, K. M. and Lillegraven, J. A..] Contributions to Geology, University of Wyoming, Special Paper, 3, 163–75.Google Scholar
Wood, A. E. (1937). The mammalian fauna of the White River Oligocene. Part II, Rodentia. Transactions of the American Philosophical Society, 28, 155–269.Google Scholar
Wood, A. E. (1955). A revised classification of the rodents. Journal of Mammalogy, 36, 165–87.CrossRefGoogle Scholar
Wood, A. E. (1959). Eocene radiation and phylogeny of the rodents. Evolution, 13, 354–61.CrossRefGoogle Scholar
Wood, A. E. (1962). The early Tertiary rodents of the Family Paramyidae. Transactions of the American Philosophical Society, 52, 1–261.CrossRefGoogle Scholar
Wood, A. E. (1965). Small rodents from the early Eocene Lysite Member, Wind River Formation of Wyoming. Journal of Paleontology, 39, 124–34.Google Scholar
Wood, A. E. (1973). Eocene rodents, Pruett Formation, southwest Texas; their pertinence to the origin of the South American Caviomorpha. Pearce-Sellards Series, Texas Memorial Museum, 20, 1–41.Google Scholar
Wood, A. E. (1977). The evolution of the rodent family Ctenodactylidae. Journal of the Paleontological Society of India, 20, 120–37.Google Scholar
Wood,, A. E. (1985). The relationships, origin and dispersal of the hystricognathous rodents. In Evolutionary Relationships among Rodents: A Multidisciplinary Analysis, ed. Luckett, W. P. and Hartenberger, J.-L., pp. 475–514. New York: Plenum Press.Google Scholar
Wortman, J. L. (1903). Studies of Eocene Mammalia in the Marsh Collection. American Journal of Science, 4, 345–68.CrossRefGoogle Scholar

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  • Sciuravidae
    • By Anne H. Walton, Pratt Museum of Natural History, Amherst College, MA, USA, Read M. Porter, Pratt Museum of Natural History, Amherst College, MA, USA
  • Edited by Christine M. Janis, Brown University, Rhode Island, Gregg F. Gunnell, University of Michigan, Ann Arbor, Mark D. Uhen, University of Alabama, Birmingham
  • Book: Evolution of Tertiary Mammals of North America
  • Online publication: 07 September 2010
  • Chapter DOI: https://doi.org/10.1017/CBO9780511541438.020
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  • Sciuravidae
    • By Anne H. Walton, Pratt Museum of Natural History, Amherst College, MA, USA, Read M. Porter, Pratt Museum of Natural History, Amherst College, MA, USA
  • Edited by Christine M. Janis, Brown University, Rhode Island, Gregg F. Gunnell, University of Michigan, Ann Arbor, Mark D. Uhen, University of Alabama, Birmingham
  • Book: Evolution of Tertiary Mammals of North America
  • Online publication: 07 September 2010
  • Chapter DOI: https://doi.org/10.1017/CBO9780511541438.020
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  • Sciuravidae
    • By Anne H. Walton, Pratt Museum of Natural History, Amherst College, MA, USA, Read M. Porter, Pratt Museum of Natural History, Amherst College, MA, USA
  • Edited by Christine M. Janis, Brown University, Rhode Island, Gregg F. Gunnell, University of Michigan, Ann Arbor, Mark D. Uhen, University of Alabama, Birmingham
  • Book: Evolution of Tertiary Mammals of North America
  • Online publication: 07 September 2010
  • Chapter DOI: https://doi.org/10.1017/CBO9780511541438.020
Available formats
×