Pates et al.—Hurdiids from the middle Cambrian of Utah
Gaines, R.R., Briggs, D.E., and Yuanlong, Z., 2008, Cambrian Burgess Shale–type deposits share a common mode of fossilization: Geology, v. 36, p. 755–758.
Garson, D.E., Gaines, R.R., Droser, M.L., Liddell, W.D., and Sappenfield, A., 2012, Dynamic palaeoredox and exceptional preservation in the Cambrian Spence Shale of Utah: Lethaia, v. 45, p. 164–177.
Gaines, R.R., Hammarlund, E.U., Hou, X., Qi, C., Gabbott, S.E., Zhao, Y., Peng, J., and Canfield, D.E., 2012, Mechanism for Burgess Shale-type preservation: Proceedings of the National Academy of Sciences, v. 109, p. 5180–5184.
Goloboff, P., and Catalano, S., 2016, TNT version 1.5, including a full imple- mentation of phylogenetic morphometrics: Cladistics, v. 32, p. 221–238.
Gunther, L.F., and Gunther, V.G., 1981, Some middle Cambrian fossils of Utah: Brigham Young University Geology Studies, v. 28, p. 1–81.
Halgedahl, S.L., Jarrard, R.D., Brett, C.E., and Allison, P.A., 2009, Geophysical and geological signatures of relative sea level change in the upper Wheeler Formation, Drum Mountains, West-Central Utah: A perspective into exceptional preservation of fossils: Palaeogeography, Palaeoclimatology, Palaeoecology, v. 277, p. 34–56.
Hendricks, J.R., 2013, Global distributional dynamics of Cambrian clades as revealed by Burgess Shale-type deposits: Geological Society, London, Memoirs, v. 38, p. 35–43.
Hendricks, J.R., and Lieberman, B.S., 2008, New phylogenetic insights into the Cambrian radiation of arachnomorph arthropods: Journal of Paleontology, v. 82, p. 585–594.
Hendricks, J.R., Lieberman, B.S., and Stigall, A.L., 2008, Using GIS to study palaeobiogeographic and macroevolutionary patterns in soft-bodied Cambrian arthropods: Palaeogeography, Palaeoclimatology, Palaeo- ecology, v. 264, p. 163–175.
Hou, X., Bergström, J., and Ahlberg, P., 1995, Anomalocaris and other large animals in the lower Cambrian Chengjiang fauna of southwest China: GFF, v. 117, p. 163–183.
Kloss, T.J., Dornbos, S.Q., Chen, J.Y., McHenry, L.J., and Marenco, P.J., 2015, High-resolution geochemical evidence for oxic bottom waters in three Cambrian Burgess Shale-type deposits: Palaeogeography, Palaeo- climatology, Palaeoecology, v. 440, p. 90–95.
Lerosey-Aubril, R., Hegna, T.A., Kier, C., Bonino, E., Habersetzer, J., and Carré, M., 2012, Controls on gut phosphatisation: The trilobites from the Weeks Formation Lagerstätte (Cambrian; Utah): PLoS One, v. 7, p. e32934.
Lerosey-Aubril, R., Hegna, T.A., Babcock, L.E., Bonino, E., and Kier, C., 2014, Arthropod appendages from the Weeks Formation Konservat-Lagerstätte: New occurrences of anomalocaridids in the Cambrian of Utah, USA: Bulletin of Geosciences, v. 89, p. 269–282.
Liddell, W.D., Wright, S.W., and Brett, C.E., 1997, Sequence stratigraphy and paleoecology of the middle Cambrian Spence Shale in northern Utah and southern Idaho: Brigham Young University Geology Studies, v. 42, p. 59–78.
LoDuca, S.T., Caron, J.B., Schiffbauer, J.D., Xiao, S., and Kramer, A., 2015, A reexamination of Yuknessia from the Cambrian of British Columbia and Utah: Journal of Paleontology, v. 89, p. 82–95.
Liu, Q., 2013, The first discovery of anomalocaridid appendages from the Balang Formation (Cambrian Series 2) in Hunan, China: Alcheringa, v. 37, p. 1–6.
Maddison, W.P., and Maddison, D.R., 2017, Mesquite: A modular system for evolutionary analysis. Version 3.2:
http://mesquiteproject.org.
Moore, R.A., and Lieberman, B.S., 2009, Preservation of early and middle Cambrian soft-bodied arthropods from the Pioche Shale, Nevada, USA: Palaeogeography, Palaeoclimatology, Palaeoecology, v. 277, p. 57–62.
113
Olcott Marshall, A., Wehrbein, R.L., Lieberman, B.S., and Marshall, C.P., 2012, Raman spectroscopic investigations of Burgess Shale–type preservation: A new way forward: Palaios, v. 27, p. 288–292.
Rees, M.N., 1986, A fault-controlled trough through a carbonate platform: The middle Cambrian House Range embayment: Geological Society of America Bulletin, v. 97, p. 1054–1069.
Resser, C.E., 1939, The Spence shale and its fauna (with six plates): Smithsonian Institution Miscellaneous Collections, v. 97, p. 1–29.
Robison, R.A., 1964, Late middle Cambrian faunas from western Utah: Journal of Paleontology, v. 38, p. 510–566.
Robison, R.A., 1965, Middle Cambrian eocrinoids from western North America: Journal of Paleontology, v. 39, p. 355–364.
Robison, R.A., 1991, Middle Cambrian biotic diversity: Examples from four Utah Lagerstätten, in Simonetta, A., and Conway Morris, S., eds., The Early Evolution of Metazoa and the Significance of Problematic Taxa: Cambridge, Cambridge University Press, p. 77–98.
Robison, R.A., and Babcock, L.E., 2011, Systematics, paleobiology, and taphonomy of some exceptionally preserved trilobites from Cambrian Lagerstätten of Utah: Paleontological contributions, v. 5, p. 1–47.
Robison, R.A., and Richards, B.C., 1981, Larger bivalve arthropods from the middle Cambrian of Utah: University of Kansas Paleontological Contribu- tions, v. 106, p. 1–28.
Robison, R.A., and Wiley, E.O., 1995, A new arthropod, Meristosoma: More fallout from the Cambrian explosion: Journal of Paleontology, v. 69, p. 447–459.
Robison, R.A., Babcock, L.E., and Gunther, V.G., 2015, Exceptional Cambrian fossils from Utah: A window into the Age of Trilobites: Utah Geological Survey Miscellaneous Publications, v. 15, p. 1–97.
Rogers, J.C., 1984, Depositional environments and paleoecology of two quarry sites in the middle Cambrian Marjum and Wheeler Formations, House Range, Utah: Brigham Young University Geology Studies, v. 31, p. 97–115.
Stein, M., 2013, Cephalic and appendage morphology of the Cambrian arthropod Sidneyia inexpectans: Zoologischer Anzeiger–A Journal of Comparative Zoology, v. 253, p. 164–178.
Stein, M., Church, S.B., and Robison, R.A., 2011, A new Cambrian arthropod, Emeraldella brutoni, from Utah: Paleontological Contributions, v. 3, p. 1–9.
Van Roy, P., and Briggs, D.E., 2011, A giant Ordovician anomalocaridid: Nature, v. 473, p. 510–513.
Van Roy, P., Daley, A.C., and Briggs, D.E.G., 2015, Anomalocaridid trunk limb homology revealed by a giant filter-feeder with paired flaps: Nature, v. 522, p. 77–80.
Vinther, J., Stein, M., Longrich, N.R., and Harper, D.A., 2014, A suspension- feeding anomalocarid from the early Cambrian: Nature, v. 507, p. 496–499.
Walcott, C.D., 1911, Middle Cambrian holothurians and medusae: Smithsonian Miscellaneous Collections, v. 57, p. 41–68.
Walcott, C.D., 1912, Middle Cambrian Brachiopoda, Malacostraca, Trilobita and Merostomata: Smithsonian Miscellaneous Collections, v. 57, p. 145–288.
Whiteaves, J.F., 1892, Description of a new genus and species of phyllocarid Crustacea from the middle Cambrian of Mount Stephen, B.C.: Canadian Record of Science, v. 5, p. 205–208.
Whittington, H.B., and Briggs, D.E., 1985, The largest Cambrian animal, Anomalocaris, Burgess Shale, British Columbia: Philosophical Trans- actions of the Royal Society of London. Series B, Biological Sciences, v. 309, p. 569–609.
Accepted 24 February 2017
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