New ankylosaurian trackways (cf. Tetrapodosaurus) from an uppermost Cretaceous level of the El Molino Formation of Bolivia
Tài liệu tham khảo
Apesteguía, 2011, Tunasniyoj, a dinosaur tracksite from the Jurassic–Cretaceous boundary of Bolivia, Anais da Academia Brasileira de Ciencias, 83, 267, 10.1590/S0001-37652011000100015
Apesteguía, 2011, New ichnological record from the Late Campanian Toro Toro Formation at Toro Toro, Potosí (Bolivia): first probable dromaeosaurid tracks from South America, Ameghiniana, 48, 662, 10.5710/AMGH.v48i4(341)
Apesteguía, 2020, The Ruditayoj-Tunasniyoj fossil area (Chuquisaca, Bolivia): A Triassic chirotheriid megatracksite and reinterpretation of purported thyreophoran tracks, Historical Biology
Arbour, 2016, Systematics, phylogeny and palaeobiogeography of the ankylosaurid dinosaurs, Journal of Systematic Palaeontology, 14, 385, 10.1080/14772019.2015.1059985
Arbour, 2016, Ankylosaurian dinosaur palaeoenvironmental associations were influenced by extirpation, sea-level fluctuation, and geodispersal, Palaeogeography, Palaeoclimatology, Palaeoecology, 449, 289, 10.1016/j.palaeo.2016.02.033
Belvedere, 2016, A numerical scale for quantifying the quality of preservation of vertebrate tracks, 92
Bennett, 2014, Tracks made by swimming Hippopotami: an example from Koobi Fora (Turkana Basin, Kenya), Palaeogeography, Palaeoclimatology, Palaeoecology, 409, 9, 10.1016/j.palaeo.2014.04.021
Bertrand, 2014, The Central Magmatic Province extends into Bolivia, Lithos, 188, 33, 10.1016/j.lithos.2013.10.019
Butler, 2008, Palaeoenvironmental controls on the distribution of Cretaceous herbivorous dinosaurs, Naturwissenschaften, 95, 1027, 10.1007/s00114-008-0417-5
Butler, 2008, The phylogeny of the ornithischian dinosaurs, Journal of Systematic Palaeontology, 6, 1, 10.1017/S1477201907002271
Carpenter, 1984, Skeletal reconstruction and life restoration of Sauropelta (Ankylosauria: Nodosauridae) from the Cretaceous of North America, Canadian Journal of Earth Sciences, 21, 1491, 10.1139/e84-154
Carpenter, 2008, Ankylosaurs from the Price River Quarries, Cedar Mountain Formation (Lower Cretaceous), east-central Utah, Journal of Vertebrate Palaeontology, 28, 1089, 10.1671/0272-4634-28.4.1089
Carrano, 2001, Taxon distributions and the tetrapod track record, Paleobiology, 27, 564, 10.1666/0094-8373(2001)027<0564:TDATTT>2.0.CO;2
Cónsole-Gonella, 2017, The Maastrichtian–Danian Maimará tracksite (Yacoraite Formation, Salta Group), Quebrada de Humahuaca, Argentina: environments and ichnofacies implications, Palaeogeography, Palaeoclimatology, Palaeoecology, 468, 327, 10.1016/j.palaeo.2016.11.008
Coria, 2001, South American ankylosaurs, 159
Coughlin, 2009, Hippopotamus Underwater Locomotion: Reduced-Gravity Movements for a Massive Mammal, Journal of Mammalogy, 90, 675, 10.1644/08-MAMM-A-279R.1
Currie, 1989, Dinosaur tracksites of western Canada, 293
Currie, 2011, Hands, feet, and behaviour in Pinacosaurus (Dinosauria: Ankylosauridae), Acta Palaeontologica Polonica, 56, 489, 10.4202/app.2010.0055
Deconinck, 2000, Palaeoenvironmental and diagenetic control of the mineralogy of Upper Cretaceous-Lower Tertiary deposits of the Central Palaeo-Andean basin of Bolivia (Potosi area), Sedimentary Geology, 132, 263, 10.1016/S0037-0738(00)00035-X
Falkingham, 2020, Discussion: defining the morphological quality of fossil footprints. Problems and principles of preservation in tetrapod ichnology with examples from the Palaeozoic to the present by Lorenzo Marchetti et al, Earth-Science Reviews, 208, 103320, 10.1016/j.earscirev.2020.103320
Falkingham, 2011, Simulating sauropod manus-only trackway formation using fnite-element analysis, Biology Letters, 7, 142, 10.1098/rsbl.2010.0403
Falkingham, 2011, The ‘Goldilocks’ effect: preservation bias in vertebrate track assemblages, Journal of The Royal Society Interface, 8, 1142, 10.1098/rsif.2010.0634
Falkingham, 2018, A standard protocol for documenting modern and fossil ichnological data, Palaeontology, 61, 469, 10.1111/pala.12373
Fanti, 2013, A diverse, high-latitude ichnofauna from the Late Cretaceous Wapiti Formation, Alberta, Canada, Cretaceous Research, 41, 256, 10.1016/j.cretres.2012.12.010
Farlow, 2018, Footfall pattern of a bottom-walking crocodile (Crocodylus acutus), PALAIOS, 33, 406, 10.2110/palo.2018.037
Fink, 2002, 3925
Fiorillo, 2019, Dinosaur ichnology and sedimentology of the Chignik Formation (Upper Cretaceous), Aniakchak National Monument, southwestern Alaska; Further insights on habitat preferences of high-latitude hadrosaurs, PloS One, 14, 10.1371/journal.pone.0223471
Francischini, 2018, The Presence of Ankylosaur Tracks in the Guará Formation (Brazil) and Remarks on the Spatial and Temporal Distribution of Late Jurassic Dinosaurs, Ichnos, 25, 177, 10.1080/10420940.2017.1337573
Fujita, 2003, First ankylosaur footprints from Japan and their significance, Journal of Vertebrate Paleontology, 23, 52
Gangloff, 2012
Gangloff, 2004, An Early Late Cretaceous Dinosaur Tracksite in Central Yukon Territory, Canada, Ichnos, 11, 299, 10.1080/10420940490442269
Gatesy, 2020, Hitchcock's Leptodactyli, penetrative tracks, and dinosaur footprint diversity, Journal of Vertebrate Paleontology, 10.1080/02724634.2020.1781142
Harington, 2005, Photographic catalogue of trackways in the Canadian Museum of Nature, Syllogeus, 75, 1
Herrero, 2017, Pentadactyl ankylosaurian manus tracks from the Lower Cretaceous of Galve (Teruel, Spain): first occurrence of Tetrapodosaurus in the Iberian Peninsula, Journal of Iberian Geology, 43, 319, 10.1007/s41513-017-0024-4
Hippler, 2000, 90
Hornung, 2014, Metatetrapous valdensis Nopcsa, 1923 and the presence of ankylosaur tracks (Dinosauria: Thyreophora) in the Berriasian (Early Cretaceous) of northwestern Germany, Ichnos, 21, 1, 10.1080/10420940.2013.873720
Hunt, 2006, Tetrapod ichnofacies of the Cretaceous, vol. 35, 61
Ishigaki, 2009, Dinosaur footprints from the Upper Cretaceous of Mongolia, Geological Quarterly, 53, 449
Jackson, 2010, Range of experimental dinosaur (Hypsilophodon foxii) footprints due to variation in sand consistency: how wet was the track?, Ichnos, 17, 197, 10.1080/10420940.2010.510026
Kinneer, 2016, Redescription of Gastonia burgei (Dinosauria: Ankylosauria, Polacanthidae), and description of a new species, Neues Jahrbuch fur Geologie und Paläontologie-AbhAndlungen, 281, 37, 10.1127/njgpa/2016/0605
Kurtz, 2001, Dinosaur tracks in the Plainview Formation, Dakota Group (Cretaceous, Albian) near Canon City, Colorado: a preliminary report on another “dinosaur ridge, vol. 38, 155
Lee, 2002, Manus-only sauropod tracks in the Uhangri Formation (Upper Cretaceous), Korea and their paleobiological implications, Journal of Paleontology, 76, 558, 10.1666/0022-3360(2002)076<0558:MOSTIT>2.0.CO;2
Leonardi, 1984, Le impronte fossili di dinosauri, 163
Leonardi, 1987, 117
Leonardi, 1994, 248
Leonardi, 2002, Icnofósseis da Bacia do Rio do Peixe, PB o mais marcante registro de pegadas de dinossauros do Brasil, 101
Leonardi, 2007, Dinosaur ichnocoenosis from Sousa and Uirauna–Brejo das Freiras Basins, northeast Brazil, 354
Lockley, 2014, Notes on a new ankylosaur track from the Dakota Group (Cretaceous) of northern Colorado New Mexico Museum of Natural History and Science, Bulletin, 62, 301
Lockley, 1995, Ceratopsid tracks and associated ichnofauna from the Laramie Formation (Upper Cretaceous: Maastrichtian) of Colorado, Journal of Vertebrate Paleontology, 15, 592, 10.1080/02724634.1995.10011251
Lockley, 1990, Did “Brontosaurus” ever swim out to sea?: Evidence from brontosaur and other dinosaur footprints, Ichnos, 1, 81, 10.1080/10420949009386337
Lockley, 1999, Dinosaur tracks from the Cedar Mountain Formation of Eastern Utah: a preliminary report, vol. 99, 253
Lockley, 2002, Titanosaurid trackways from the Upper Cretaceous of Bolivia: evidence for large manus, wide-gauge locomotion and gregarious behaviour, Cretaceous Research, 23, 383, 10.1006/cres.2002.1006
Lockley, 2006, vol. 35, 95
Lockley, 2014, Mesozoic vertebrate tracksites from the Dominguez-Escalante National Conservation Area of Western Colorado: Implications for paleoecology and management, vol. 62, 215
Lockley, 2014, A bonanza of new tetrapod tracksites from the Cretaceous Dakota group, western Colorado: Implications for paleoecology, vol. 62, 393
Lockley, 2018, A large assemblage of tetrapod tracks from the Cretaceous Naturita Formation, Cedar Canyon region, southwestern Utah, Cretaceous Research, 92, 108, 10.1016/j.cretres.2018.08.003
Lockley, 2021, Tetrapodosaurus trackways from the Cretaceous of Colorado and Canada: observations on variability in ankylosaurian gaits, vol. 82, 227
Loewen, 2013, Review of Late Cretaceous ankylosaurian dinosaurs from the Grand Staircase Region, Southern Utah, 445
Maidment, 2008, Systematics and phylogeny of Stegosauria (Dinosauria: Ornithischia), Journal of Systematic Palaeontology, 6, 367, 10.1017/S1477201908002459
Maidment, 2014, What drove reversions to quadrupedality in ornithischian dinosaurs? Testing hypotheses using centre of mass modelling, Naturwissenschaften, 101, 989, 10.1007/s00114-014-1239-2
Mallison, 2014, Photogrammetry in paleontology – a practical guide, Journal of Paleontological Techniques, 12, 1
Mallon, 2018, A “bloat-and-float” taphonomic model best explains the upside-down preservation of ankylosaurs, Palaeogeography, Palaeoclimatology, Palaeoecology, 497, 117, 10.1016/j.palaeo.2018.02.010
Marchetti, 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-Science Reviews, 193, 109, 10.1016/j.earscirev.2019.04.008
Marchetti, 2020, Reply to discussion of “Defining the morphological quality of fossil footprints. Problems and principles of preservation in tetrapod ichnology with examples from the Palaeozoic to the present” by Marchetti et al. (2019), Earth-Science Reviews, 208, 103319, 10.1016/j.earscirev.2020.103319
Marty, 2009, Formation and taphonomy of human footprints in microbial mats of present-day tidal-flat environments: Implications for the study of fossil footprints, Ichnos, 16, 127, 10.1080/10420940802471027
Marty, 2010, Comparative analysis of Late Jurassic sauropod trackways from the Jura Mountains (NW Switzerland) and the central High Atlas Mountains (Morocco): implications for sauropod ichnotaxonomy, Historical Biology, 22, 109, 10.1080/08912960903503345
Marty, 2016, Dinosaur track terminology: a glossary of terms, 399
Maryanska, 1977, Ankylosauridae (Dinosauria) from Mongolia, Palaeontologia Polonica, 37, 85
McAllister, 1989, Dakota Formation tracks from Kansas: Implications for the recognition of tetrapod subaqueous traces, 343
McCrea, 2000, 184
McCrea, 2016, 615
McCrea, 2001, Global distribution of purported ankylosaur track occurrences, 413
McCrea, 2011, 120
McCrea, 2014, A review of vertebrate trackbearing formations from the Mesozoic and earliest Cenozoic of western Canada with a description of a new theropod ichnospecies and reassignement of an avian ichnocenosis, vol. 62, 5
Meyer, 2001, The Late Cretaceous vertebrate ichnofacies of Bolivia – facts and implications, vol. 7, 133
Meyer, 2016, Dinosaur tracks from a Cretaceous alluvial plane (Aroiflla Formation, Bolivia), 113
Meyer, 2018, Titanosaur trackways from the Late Cretaceous El Molino Formation of Bolivia (Cal Orck'o, Sucre), Annales Societatis Geologorum Poloniae, 88, 223
Meyer, 2020, The Late Cretaceous dinosaur track record of Bolivia – Review and perspective, Journal of South American Earth Sciences
Milan, 2006, Variations in the morphology of emú (Dromaius novaehollandiae) tracks, reflecting differences in walking pattern and substrate consistency: ichnotaxonomical implications, Palaeontology, 49, 405, 10.1111/j.1475-4983.2006.00543.x
Nopcsa, 1923, Die Familien der Reptilien, Fortschritte der Geologie und Palaeontologie, 2, 1
Novas, 2009, 452
Ösi, 2009, New remains of Hungarosaurus tormai (Ankylosauria, Dinosauria) from the Upper Cretaceous of Hungary: skeletal reconstruction and body mass estimation, Paläontologische Zeitschrift, 83, 227, 10.1007/s12542-009-0017-5
Ostrom, 1970, vol. 35, 1
Pereda-Suberbiola, 2005, Autopodium of the holotype of Dracopelta zbyszewskii (Dinosauria, Ankylosauria) and its type horizon and locality (Upper Jurassic: Tithonian, western Portugal), Neues Jahrbuch fur Geologie und Paläontologie, 235, 175, 10.1127/njgpa/235/2005/175
Pereda-Suberbiola, 2015, Síntesis del registro fósil de dinosaurios tireóforos en Gondwana, vol. 15, 90
Pond, 2014, Tracking dinosaur of the Isle of Wight: a review of track, sites, and current research, Biological Journal of the Linnean Society, 113, 737, 10.1111/bij.12340
Rodriguez-De La Rosa, 2018, Huellas de anquilosaurios del Jurásico Medio de México, Boletín de la Sociedad Geológica Mexicana, 70, 379
Romano, 2015, Could stegosaurs swim? Suggestive evidence from the Middle Jurassic tracksite of the Cleveland Basin, Yorkshire, UK, Proceedings of the Yorkshire Geological Society, 60, 227, 10.1144/pygs2015-354
Romano, 2007, Trackway Ratio: A New Look at Trackway Gauge in the Analysis of Quadrupedal Dinosaur Trackways and its Implications for Ichnotaxonomy, Ichnos, An International Journal for Plant and Animal Traces, 14, 257
Romano, 2016, Corroborating trackmaker identification through footprint functional analysis: the case study of Ichniotherium and Dimetropus, Lethaia, 49, 102, 10.1111/let.12136
Salisbury, 2016, The Dinosaurian Ichnofauna of the Lower Cretaceous (Valanginian–Barremian) Broome Sandstone of the Walmadany Area (James Price Point), Dampier Peninsula, Western Australia, Journal of Vertebrate Paleontology, 36, 1, 10.1080/02724634.2016.1269539
Sempere, 1994, Kimmeridgian? to Paleocene tectonic evolution of Bolivia, 168
Sempere, 1997, Stratigraphy and chronology of Upper Cretaceous-lower Paleogene strata in Bolivia and northwest Argentina, GSA Bulletin, 109, 709, 10.1130/0016-7606(1997)109<0709:SACOUC>2.3.CO;2
Sennikov, 2006, Reading segnosaur tracks (in Russian), Priroda, 5, 58
Senter, 2011, Evidence for a sauropod-like metacarpal configuration in ankylosaurian dinosaurs, Acta Palaeontologica Polonica, 56, 221, 10.4202/app.2010.0041
Shillito, 2019, Dinosaur-landscape interactions at a diverse Early Cretaceous tracksite (Lee Ness Sandstone, Ashdown Formation, southern England), Palaeogeography, Palaeoclimatology, Palaeoecology, 514, 593, 10.1016/j.palaeo.2018.11.018
Sissons, 2011, 187
Sternberg, 1932, 59
Thulborn, 1990, 409
Thulborn, 1989, A footprint as a history of movement, 51
Vickaryous, 2004, Ankylosauria, 427
Vila, 2005, Manus-only titansaurid trackway from Fumanya (Maastrichtian, Pyrenees): further evidence for underprint origin, Lethaia, 38, 211, 10.1080/00241160510013312
Weems, 2015, The Lower Cretaceous Patuxent Formation Ichnofauna of Virginia, Ichnos, 22, 208, 10.1080/10420940.2015.1063493
Wilson, 2003, Are manus-only trackways evidence of swimming, sinking, or wading?, Journal of Vertebrate Paleontology, 23, 111A
Wright, 1998, A review of the Early Cretaceous terrestrial vertebrate track-bearing strata of England and Spain, vol. 14, 143
Xing, 2016, Early Cretaceous dinosaur and other tetrapod tracks of southwestern China, Science Bulletin, 61, 1044, 10.1007/s11434-016-1093-z
Xing, 2007, The discovery of dinosaur footprints from the Middle Cretaceous Jiaguan Formation of Qijiang County, Chongqing City, Acta Geologica Sinica, 81, 1591
Xing, 2015, An Ornithopod Dominated Tracksite from the Lower Cretaceous Jiaguan Formation (Barremian–Albian) of Qijiang, South-Central China: New Discoveries, Ichnotaxonomy, Preservation and Palaeoecology, PloS One, 10, 10.1371/journal.pone.0141059
