Traces of Locomotion of Ediacaran Macroorganisms
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[1] M. Droser,et al. You can get anything you want from Alice's Restaurant Bed: exceptional preservation and an unusual fossil assemblage from a newly excavated bed (Ediacara Member, Nilpena, South Australia) , 2020 .
[2] A. Ivantsov,et al. Morphology of integuments of the Precambrian animals, Proarticulata , 2019 .
[3] S. Xiao,et al. Death march of a segmented and trilobate bilaterian elucidates early animal evolution , 2019, Nature.
[4] A. Ivantsov,et al. Cephalonega, A New Generic Name, and the System of Vendian Proarticulata , 2019, Paleontological Journal.
[5] M. Droser,et al. Slime travelers: Early evidence of animal mobility and feeding in an organic mat world , 2019, Geobiology.
[6] A. Ivantsov. Vendian Macrofossils of the Yudoma Group, Southeast of the Siberian Platform , 2018, Paleontological Journal.
[7] J. Hope,et al. Ancient steroids establish the Ediacaran fossil Dickinsonia as one of the earliest animals , 2018, Science.
[8] M. Droser,et al. The short-lived but successful tri-radial body plan: a view from the Ediacaran of Australia , 2018, Australian Journal of Earth Sciences.
[9] M. Droser,et al. Highly regulated growth and development of the Ediacara macrofossil Dickinsonia costata , 2017, PloS one.
[10] M. Droser,et al. MICROBIAL MAT SANDWICHES AND OTHER ANACTUALISTIC SEDIMENTARY FEATURES OF THE EDIACARA MEMBER (RAWNSLEY QUARTZITE, SOUTH AUSTRALIA): IMPLICATIONS FOR INTERPRETATION OF THE EDIACARAN SEDIMENTARY RECORD , 2017, Palaios.
[11] O. Vinn,et al. Rare tool marks from the Upper Ordovician of Estonia (Baltica) , 2016 .
[12] Imran A. Rahman,et al. Suspension feeding in the enigmatic Ediacaran organism Tribrachidium demonstrates complexity of Neoproterozoic ecosystems , 2015, Science Advances.
[13] M. Droser,et al. Paleoecology of the enigmatic Tribrachidium: New data from the Ediacaran of South Australia , 2015 .
[14] M. Zakrevskaya. Paleoecological reconstruction of the Ediacaran benthic macroscopic communities of the White Sea (Russia) , 2014 .
[15] M. Droser,et al. Scratch Traces of Large Ediacara Bilaterian Animals , 2014 .
[16] A. Ivantsov,et al. Trace fossils of precambrian metazoans “Vendobionta” and “Mollusks” , 2013, Stratigraphy and Geological Correlation.
[17] A. Ivantsov,et al. Feeding traces of proarticulata—the Vendian metazoa , 2011 .
[18] A. Ivantsov. Paleontological evidence for the supposed precambrian occurrence of mollusks , 2010 .
[19] J. Vinther,et al. A placozoan affinity for Dickinsonia and the evolution of late Proterozoic metazoan feeding modes , 2010, Evolution & development.
[20] A. Ivantsov. New reconstruction of Kimberella, problematic Vendian metazoan , 2009 .
[21] M. Droser,et al. Textured organic surfaces associated with the Ediacara biota in South Australia , 2009 .
[22] N. Noffke. The criteria for the biogeneicity of microbially induced sedimentary structures (MISS) in Archean and younger, sandy deposits , 2009 .
[23] A. Ivantsov,et al. New data on Kimberella, the Vendian mollusc-like organism (White Sea region, Russia): palaeoecological and evolutionary implications , 2007 .
[24] G. Narbonne. THE EDIACARA BIOTA: Neoproterozoic Origin of Animals and Their Ecosystems , 2005 .
[25] D. Grazhdankin. Patterns of distribution in the Ediacaran biotas: facies versus biogeography and evolution , 2004, Paleobiology.
[26] A. Seilacher,et al. Ediacaran biota: The dawn of animal life in the shadow of giant protists , 2003 .
[27] M. Fedonkin. The origin of the Metazoa in the light of the Proterozoic fossil record , 2003 .
[28] S. Jensen,et al. A scratch circle origin for the medusoid fossil Kullingia , 2002 .
[29] A. Ivantsov,et al. Giant traces of vendian animals , 2002 .
[30] Wolfgang E. Krumbein,et al. Microbially Induced Sedimentary Structures: A New Category within the Classification of Primary Sedimentary Structures , 2001 .
[31] I. A. Yu,et al. Locomotion trails of the Vendian invertebrates preserved with the producer's body fossils, White Sea, Russia , 2001 .
[32] J. Gehling. Microbial mats in terminal Proterozoic siliciclastics; Ediacaran death masks , 1999 .
[33] A. Seilacher. Biomat-related lifestyles in the Precambrian , 1999 .
[34] M. Fedonkin,et al. The Late Precambrian fossil Kimberella is a mollusc-like bilaterian organism , 1997, Nature.
[35] J. Gehling,et al. Long expected sponges from the Neoproterozoic Ediacara fauna of South Australia , 1996, Journal of Paleontology.
[36] W. Gibbons,et al. Precambrian , 2019, Geological Society, London, Memoirs.
[37] R. Jenkins. Functional and Ecological Aspects of Ediacaran Assemblages , 1992 .
[38] B. Sokolov,et al. Systematic Description of Vendian Metazoa , 1990 .
[39] M. Glaessner,et al. The Late Precambrian fossils from Ediacara, South Australia , 1966 .
[40] B. Daily,et al. The geology and late precambrian fauna of the Ediacara fossil reserve , 1959 .
[41] C. Reg. Early Cambrian jellyfishes of Ediacara, South Australia and Mount John, Kimberley District, Western Australia , 1949 .