Taxonomy of the late Ediacaran index fossil Cloudina and a new similar taxon from South China
暂无分享,去创建一个
[1] K. Uesugi,et al. A Cloudina-like fossil with evidence of asexual reproduction from the lowest Cambrian, South China , 2017, Geological Magazine.
[2] J. Schiffbauer. RESEARCH FOCUS: The age of tubes: A window into biological transition at the Precambrian-Cambrian boundary , 2016 .
[3] J. Schiffbauer,et al. The latest Ediacaran Wormworld fauna: Setting the ecological stage for the Cambrian Explosion , 2016 .
[4] D. Schrag,et al. The end of the Ediacaran: Two new exceptionally preserved body fossil assemblages from Mount Dunfee, Nevada, USA , 2016 .
[5] Maoyan Zhu,et al. Transitional Ediacaran–Cambrian small skeletal fossil assemblages from South China and Kazakhstan: Implications for chronostratigraphy and metazoan evolution , 2016 .
[6] P. Okubo,et al. The 2014-2015 Pahoa lava flow crisis at Kilauea Volcano, Hawai'i; disaster avoided and lessons learned , 2016 .
[7] T. Palacios,et al. Late Ediacaran skeletal body fossil assemblage from the Navalpino anticline, central Spain , 2015 .
[8] J. Schiffbauer,et al. Life history and autecology of an Ediacaran index fossil: Development and dispersal of Cloudina , 2015 .
[9] S. Xiao,et al. New material of the biomineralizing tubular fossil Sinotubulites from the late Ediacaran Dengying Formation, South China , 2015 .
[10] A. J. Kaufman,et al. A unifying model for Neoproterozoic–Palaeozoic exceptional fossil preservation through pyritization and carbonaceous compression , 2014, Nature Communications.
[11] J. Schiffbauer,et al. Exceptional Fossil Conservation through Phosphatization , 2014 .
[12] A. Curtis,et al. Ediacaran metazoan reefs from the Nama Group, Namibia , 2014, Science.
[13] J. Schiffbauer,et al. Tube growth patterns and microbial mat-related lifestyles in the Ediacaran fossil Cloudina, Gaojiashan Lagerstätte, South China , 2014 .
[14] M. Knörnschild,et al. Corrigendum: Bats host major mammalian paramyxoviruses , 2014, Nature Communications.
[15] H. Hua,et al. Tube construction and life mode of the late Ediacaran tubular fossil Gaojiashania cyclus from the Gaojiashan Lagerstätte , 2013 .
[16] J. Schiffbauer,et al. Preservational modes in the Ediacaran Gaojiashan Lagerstätte: Pyritization, aluminosilicification, and carbonaceous compression , 2012 .
[17] J. A. G. Vintaned,et al. New Finds of Skeletal Fossils in the Terminal Neoproterozoic of the Siberian Platform and Spain , 2012 .
[18] M. Zatoń,et al. Inconsistencies in proposed annelid affinities of early biomineralized organism Cloudina (Ediacar , 2012 .
[19] J. Schiffbauer,et al. Morphology and paleoecology of the late Ediacaran tubular fossil Conotubus hemiannulatus from the Gaojiashan Lagerstätte of southern Shaanxi Province, South China , 2011 .
[20] P. Li,et al. BIOSTRATINOMY OF THE LATE EDIACARAN PYRITIZED GAOJIASHAN LAGERSTÄTTE FROM SOUTHERN SHAANXI, SOUTH CHINA: IMPORTANCE OF EVENT DEPOSITS , 2010 .
[21] S. Jensen,et al. A new species of Cloudina from the terminal Ediacaran of Spain , 2010 .
[22] J. Schiffbauer,et al. Microfossil Phosphatization and Its Astrobiological Implications , 2009 .
[23] S. Bengtson,et al. Tube structure and original composition of Sinotubulites: shelly fossils from the late Neoproterozoic in southern Shaanxi, China , 2008 .
[24] Xunlai Yuan,et al. The advent of mineralized skeletons in Neoproterozoic Metazoa—new fossil evidence from the Gaojiashan Fauna , 2007 .
[25] Hua Hong,et al. Pyritization in the Gaojiashan Biota , 2007 .
[26] S. Xiao,et al. Skeletogenesis and asexual reproduction in the earliest biomineralizing animal Cloudina , 2005 .
[27] Chen Zhe. LATE SINIAN (TUBULAR) METAZOAN FOSSILS: CLOUDINA AND SINOTUBULITES FROM SOUTHERN SHAANXI , 2001 .
[28] J. Hagadorn,et al. EDIACARAN FOSSILS FROM THE SOUTHWESTERN GREAT BASIN, UNITED STATES , 2000, Journal of Paleontology.
[29] Hua Hong,et al. FOSSIL EVIDENCES OF LATEST NEOPROTEROZOIC GAOJIASHAN BIOTA AND THEIR CHARACTERISTICS , 2000 .
[30] Grant Sw. Shell structure and distribution of Cloudina, a potential index fossil for the terminal Proterozoic. , 1990 .
[31] J. Mount,et al. A pre-trilobite shelly fauna from the White–Inyo region of eastern California and western Nevada , 1987, Journal of Paleontology.
[32] J. Mount,et al. Paleoenvironments of an Earliest Cambrian (Tommotian) Shelly Fauna in the Southwestern Great Basin, U.S.A. , 1986 .
[33] K. Muller. Exceptional Preservation in Calcareous Nodules , 1985 .
[34] J. Mount,et al. Two new pre-trilobite faunas from western North America , 1983, Nature.
[35] M. Glaessner. Early Phanerozoic annelid worms and their geological and biological significance , 1976, Journal of the Geological Society.
[36] G. Germs. New shelly fossils from Nama Group, South West Africa , 1972 .