Publication Cover
Historical Biology
An International Journal of Paleobiology
Volume 33, 2021 - Issue 7
96
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Flamingo-like footprints and the problem of addressing biological diversity in the past

ORCID Icon, , , &
Pages 912-926 | Received 15 Feb 2019, Accepted 14 Sep 2019, Published online: 02 Oct 2019

References

  • Alonso RN1987. Valoración de icnoavifauna de ambientes boratíferos [Assessment of bird ichnfauna of boratiferous environments]. IV Congreso Latinoamericano de Paleontología; Jul 27–30; La Paz; Bolivia. p. 586–597. Spanish.
  • Alonso RN. 2012. Icnitas de aves en depósitos de boratos y su contribución a la reconstrucción paleoambiental [Birds tracks in deposits of borates and their contribution to the paleoenvironmental reconstruction]. Rev Paléobiol. 11:429–445. Spanish.
  • Amidon WH, Ciccioli PL, Marenssi SA, Limarino CO, Fisher GB, Burbank DW,Kylander-Clark A. 2016. U-Pb ages of detrital and volcanic zircons of the Toro Negro Formation, northwestern Argentina: Age, provenance and sedimentation rates. J S Am Earth Sci. 70:237–250.
  • Aramayo SA, Manera de Bianco T, Bastianelli NV, Melchor RN. 2015. Pehuen Co: updated taxonomic review of a late Pleistocene ichnological site in Argentina. Palaeogeogr Palaeoclimatol Palaeoecol. 439:144–165.
  • Belvedere M, Bennett MR, Marty D, Budka M, Reynolds SC, Bakirov R. 2018. Stat-tracks and mediotypes: powerful tools for modern ichnology based on 3D models. PeerJ. 6:e4247.
  • Bertling M, Braddy SJ, Bromley RG, Demathieu GR, Genise J, Mikuláš R, Nielsen JK, Nielsen KSS, Rindsberg AK, Schlirf M, et al. 2006. Names for trace fossils: a uniform approach. Lethaia. 39(3):265–286.
  • Blockeel H, De Raedt L, Ramon J 1998. Top-down induction of clustering trees. Proceedings of the 15th International Conference on Machine Learning. Morgan Kaufmann. p. 55–63.
  • Breiman L. 1984. Classification and Regression Trees. New York: Routledge.
  • Carrano MT, Wilson JA. 2001. Taxon distributions and the tetrapod track record. Paleobiology. 27(3):564–582.
  • Ciccioli PL, Limarino CO, Friedman R, Marenssi SA. 2014. New high precision U-Pb ages for the Vinchina Formation: implications for the stratigraphy of the Bermejo Andean foreland basin (La Rioja province, western Argentina). J S Am Earth Sci. 56:200–213.
  • Ciccioli PL, Limarino CO, Marenssi SA, Tedesco AM, Tripaldi A. 2010. Estratigrafía de la Cuenca de Vinchina (terciario), sierras pampeanas, provincia de la Rioja [Stratigraphy of the Vinchina Basin (tertiary), sierras pampeanas, La Rioja province]. Rev Asoc Geol Argent. 66(1–2):146–155, Spanish.
  • Ciccioli PL, Limarino CO, Marenssi SA, Tedesco AM,Tripaldi A. 2011. Tectosedimentary evolution of the La Troya and Vinchina depocenters (northern Bermejo Basin, Tertiary), La Rioja, Argentina. Cenozoic Geology of the Central Andes of Argentina. 91–110.
  • Ciccioli PL, Marenssi SA, Rossello EA, Limarino CO. 2013. Sedimentary patterns in the Vinchina Basin: interplay between compressional and transcurrent tectonism during the Andean Orogeny. B Geofis Teor Appl. 54(Suppl: 2):217–220.
  • De Valais S, Melchor RN. 2008. Ichnotaxonomy of bird-like footprints: an example from the Late Triassic-Early Jurassic of northwest Argentina. J Vertebr Paleontol. 28(1):145–159.
  • Falkingham PL. 2014. Interpreting ecology and behavior from the vertebrate fossil track record. J Zool. 292(4):222–228.
  • Falkingham PL, Bates KT, Avanzini M, Bennett M, Bordy EM, Breithaupt BH, Castanera D, Citton P, Diaz-Martinez I, Farlow JO, et al. 2018. A standard protocol for documenting modern and fossil ichnological data. Palaeontology. 61(4):469–480.
  • Farlow JO,Holtz TR. 2002. The fossil record of predation in dinosaurs. The Paleontological Society Papers. 8:251–266.
  • Feduccia A 1980. The age of birds. Harvard University Press.
  • Frenguelli J. 1950. Ichnites del Paleozoico Superior del oeste argentino. Revista De La Asociación Geológica Argentina. 5:136–148.
  • Kaufman L, Rousseeuw PJ, editors. 1990. Finding groups in data: an introduction to cluster analysis. John Wiley & Sons.
  • Krapovickas V, Vizcaíno S. 2016. The Cenozoic radiation of mammals. In: Mangano MG, Butois LA, editors. The trace-fossil record of major evolutionary events. Dordrecht: Springer; p. 371–410.
  • Krapovickas V, Bargo MS, Vizcaíno SF, Raigemborn MS, Fernicola JC 2013. Huellas fósiles de mamíferos de la Formación Santa Cruz (Mioceno Inferior; provincia de Santa Cruz): aspectos tafonómicos. [Fossil footprints of mammals on the Santa Cruz Formation (Lower Miocene, Santa Cruz Province): taphonomic aspects]. Paper presented at: XXVII Jornadas Argentinas de Paleontología de Vertebrados; May 22–24; La Rioja, Argentina: Libro de resúmenes 55. Spanish.
  • Krapovickas V, Ciccioli PL, Mángano MG, Marsicano CA, Limarino CO. 2009a. Paleobiology and paleoecology of an arid–semiarid Miocene South American ichnofauna in anastomosed fluvial deposits. Palaeogeogr Palaeoclimatol Palaeoecol. 284(3–4):129–152.
  • Krapovickas V, Mángano MG, Marsicano CA. 2009b. Cenozoic tetrapod footprints from the Vinchina Basin, La Rioja, Argentina. Ameghiniana. 46(4):33.
  • Krapovickas V, Muñoz NA, Alonso-Muruaga PJ, Ciccioli P, Marenssi S, Vizcaíno SF. 2017. Tracheria Troyana (Krapovickas and Nasif, 2011): redefinition, environmental distribution, and heritage conservation. Ichnos. 25(2–3):221–231.
  • Krapovickas V, Nasif NL. 2011. Large caviomorph rodent footprints of the late oligocene vinchina formation, Argentina. Palaeontol Electron. 14(2):12A.
  • Lallensack JN, van Heteren AH, Wings O. 2016. Geometric morphometric analysis of intratrackway variability: a case study on theropod and ornithopod dinosaur trackways from Münchehagen (Lower Cretaceous, Germany). PeerJ. 4:e2059.
  • Laporte LF, Behrensmeyer AK. 1980. Tracks and substrate reworking by terrestrial vertebrates in quaternary sediments of Kenya. J Sediment Res. 50(4):1337–1346.
  • Leonardi G. 1987. Glossary and manual of tetrapod footprint palaeoichnology. Brasilia (Brazil): departamento Nacional da Produçao Mineral. Northwestern Argentina. J S Am Earth Sci. 14(7):751–762.
  • Lockley MG. 1991. Tracking dinosaurs: a new look at an ancient world. Cambridge University Press.
  • Lockley MG. 1998. The vertebrate track record. Nature. 396(6710):429–432.
  • Lockley MG, Lim JD, Kim JY, Kim KS, Huh M, Hwang KG. 2012. Tracking Korea’s early birds: a review of Cretaceous avian ichnology and its implications for evolution and behavior. Ichnos. 19(1–2):17–27.
  • Manning PL 2004. A new approach to the analysis and interpretation of tracks: examples from the dinosauria. Geological Society, London, Special Publications. 228(1):93–123.
  • Marchetti L, Belvedere M, Voigt S, Klein H, Castanera D, Díaz-Martínez I, Marty D, Xingh L, Feola S, Melchor RN, et al. 2019. Defining the morphological quality of fossil footprints. Problems and principles of preservation in tetrapod ichnology with examples from the Palaeozoic to the present. Earth-Sci Rev. 193:109–145.
  • Marenssi SA, Ciccioli PL, Limarino CO, Schencman LJ, Diaz MY. 2015. Using fluvial cyclicity to decipher the interaction of basement-and fold-thrust-belt tectonics in a broken foreland basin: vinchina Formation (Miocene), northwestern Argentina. J Sediment Res. 85(4):361–380.
  • Marenssi SA, Net L, Caselli A, Tripaldi A, Limarino CO. 2000. Hallazgo de discordancias intraformacionales en la Formación Vinchina (Neógeno), quebrada de La Troya, La Rioja, Argentina [Finding of intraformational unconformity at the Vinchina Formation (Neogene), La Troya Creek, La Rioja, Argentina]. Rev Asoc Geol Argent. 55:414–418. Spanish.
  • Marsicano CA, Mancuso AC, Palma RM, Krapovickas V. 2010. Tetrapod tracks in a marginal lacustrine setting (Middle Triassic, Argentina): taphonomy and significance. Palaeogeogr Palaeoclimatol Palaeoecol. 291(3–4):388–399.
  • McCrea RT, Sarjeant WAS. 2001. New ichnotaxa of bird and mammal footprints from the lower cretaceous (Albian) gates formation of Alberta. In: DH Tanke, MW Skrepnick, editors. Mesozoic Vertebr Life.  Indiana University Press; p. 453–478.
  • Melchor RN, Cardonatto MC, Visconti G. 2012. Palaeonvironmental and palaeoecological significance of flamingo-like footprints in shallow-lacustrine rocks: an example from the Oligocene–miocene Vinchina Formation, Argentina. Palaeogeogr Palaeoclimatol Palaeoecol. 315:181–198.
  • Minter NJ, Braddy SJ, Davis RB. 2007. Between a rock and a hard place: arthropod trackways and ichnotaxonomy. Lethaia. 40(4):365–375.
  • Moratalla JJ, Sanz JL, Jimenez S. 1988. Multivariate analysis on Lower Cretaceous dinosaur footprints: discrimination between ornithopods and theropods. Geobios. 21(4):395–408.
  • Olsen PE. 1995. A new approach for recognizing track makers. Geol Soc Am AbstrPrograms. 27:72.
  • Panin N, Avram E. 1962. Noi urme de vertebrate in Miocenul Subcarpatilor Rominesti [Vertebrates trace in the Miocene of the Romanian Subcarpathians]. Studii Si Cercetari De Geologie. 7:455–484. Romanian.
  • Payros A, Astibia H, Cearreta A, Pereda-Suberbiola X, Murelaga X, Badiola A. 2000. The Upper Eocene South Pyrenean Coastal deposits (Liedena sandstone, navarre): sedimentary facies, benthic formanifera and avian ichnology. Facies. 42(1):107–131.
  • Prum RO, Berv JS, Dornburg A, DJ F, Townsend JP, Lemmon EM, Lemmon AR. 2015. A comprehensive phylogeny of birds (Aves) using targeted next-generation DNA sequencing. Nature. 526(7574):569.
  • Ramos VA. 1970. Estratigrafía y estructura del Terciario en la sierra de los Colorados (Provincia de La Rioja), República Argentina. Rev Asoc Geol Argent. 25(3):359–382.
  • Ranger MJ, Pemberton SG. 1991. Multivariate analysis of ichnofossil associations in the subsurface bluesky formation (Albian, Alberta, Canada). Palaeogeogr Palaeoclimatol Palaeoecol. 85(3–4):169–187.
  • Razzolini NL, Villa B, Castanera D, Falkingham PL, Barco JL, Canudo JI, Manning PL, Galobart A. 2014. Intra-trackway morphological variations due to substrate consistency: the El frontal dinosaur tracksite (Lower Cretaceous, Spain). PLoS One. 9(4):e93708.
  • R Core Team 2016. R: A Language and Environment for Statistical Computing. Vienna, Austria: R Foundation for Statistical Computing.
  • Sarjeant WA, Reynolds RE 2001. Bird footprints from the Miocene of California. In: The Changing Face of the East Mojave Desert: Abstracts from the 2001 Desert Symposium. California State University, California; Desert Studies Consortium. p. 21–40.
  • Sarjeant WAS, Langston W. 1994. Vertebrate footprints and invertebrate traces from the Chadornian (Late Eocene) of trans–pecos texas. Bull Texas Memo Mus. 36:1–86.
  • Tripaldi A. 2001. Análisis sedimentológico de depósitos eólicos de valles intermontanos: su aplicación al estudio de secuencias terciarias del noroeste argentino [Sedimentological analysis of eolian deposits of intermontane valleys: its application to the study of tertiary sequences of northwestern Argentina]. Facultad de Ciencias Exactas y Naturales. Universidad de Buenos Aires. Spanish.
  • Tripaldi A, Net L, Limarino CO, Marenssi S, Ré G, Caselli A. 2001. Paleoambientes sedimentarios y procedencia de la Formación Vinchina, Mioceno, noroeste de la provincia de La Rioja [Sedimentary paleoenvironments and origin of the Vinchina Formation, Miocene, northwest of La Rioja province]. Rev Asoc Geol Argent. 56(4):443–465, Spanish.
  • Turner JCM. 1964. Descripción geológica de la Hoja 15c. Vinchina (Provincia de La Rioja) [Geological description Sheet 15c. Vinchina (La Rioja province)]. Buenos Aires: Dirección Nacional de Geología y Minería. Boletín 100; p. 81.
  • Vialov OS. 1965. Stratigrafiya neogenovix molass Predcarpatskogo progiba [Stratigraphy of Neogene Molasses of the Pre-Carpathian Trough]. Kiev (Russian): Naukova Dumka; p. 112.
  • Yang SY, Lockley MG, Greben R, Erickson BR, Lim SK. 1995. Flamingo and duck‐like bird tracks from the Late Cretaceous and early Tertiary: evidence and implications. Ichnos. 4(1):21–34.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.