These are the sources and citations used to research Cambrian. This bibliography was generated on Cite This For Me on
In-text: (Ashkenazy et al., 2013)
Your Bibliography: Ashkenazy, Y., Gildor, H., Losch, M., Macdonald, F., Schrag, D. and Tziperman, E., 2013. Dynamics of a Snowball Earth ocean. Nature, 495(7439), pp.90-93.
In-text: (de Rosa et al., 1999)
Your Bibliography: de Rosa, R., Grenier, J., Andreeva, T., Cook, C., Adoutte, A., Akam, M., Carroll, S. and Balavoine, G., 1999. Hox genes in brachiopods and priapulids and protostome evolution. Nature, 399(6738), pp.772-776.
In-text: (Donoghue et al., 2006)
Your Bibliography: Donoghue, P., Bengtson, S., Dong, X., Gostling, N., Huldtgren, T., Cunningham, J., Yin, C., Yue, Z., Peng, F. and Stampanoni, M., 2006. Synchrotron X-ray tomographic microscopy of fossil embryos. Nature, 442(7103), pp.680-683.
In-text: (Droser and Gehling, 2015)
Your Bibliography: Droser, M. and Gehling, J., 2015. The advent of animals: The view from the Ediacaran. Proceedings of the National Academy of Sciences, 112(16), pp.4865-4870.
In-text: (Dufour and McIlroy, 2016)
Your Bibliography: Dufour, S. and McIlroy, D., 2016. Ediacaran pre-placozoan diploblasts in the Avalonian biota: the role of chemosynthesis in the evolution of early animal life. Geological Society, London, Special Publications, 448(1), pp.211-219.
In-text: (Dunn, 2013)
Your Bibliography: Dunn, C., 2013. Evolution: Out of the Ocean. Current Biology, 23(6), pp.R241-R243.
In-text: (Evans, Gehling and Droser, 2019)
Your Bibliography: Evans, S., Gehling, J. and Droser, M., 2019. Slime travelers: Early evidence of animal mobility and feeding in an organic mat world. Geobiology, 17(5), pp.490-509.
In-text: (Gehling and Droser, 2018)
Your Bibliography: Gehling, J. and Droser, M., 2018. Ediacaran scavenging as a prelude to predation. Emerging Topics in Life Sciences, 2(2), pp.213-222.
In-text: (Ghisalberti et al., 2014)
Your Bibliography: Ghisalberti, M., Gold, D., Laflamme, M., Clapham, M., Narbonne, G., Summons, R., Johnston, D. and Jacobs, D., 2014. Canopy Flow Analysis Reveals the Advantage of Size in the Oldest Communities of Multicellular Eukaryotes. Current Biology, 24(3), pp.305-309.
In-text: (Giribet and Edgecombe, 2019)
Your Bibliography: Giribet, G. and Edgecombe, G., 2019. The Phylogeny and Evolutionary History of Arthropods. Current Biology, 29(12), pp.R592-R602.
In-text: (Holló, 2017)
Your Bibliography: Holló, G., 2017. Demystification of animal symmetry: symmetry is a response to mechanical forces. Biology Direct, 12(1).
In-text: (Laflamme and Darroch, 2015)
Your Bibliography: Laflamme, M. and Darroch, S., 2015. Palaeobiology: Ecological Revelations in Ediacaran Reproduction. Current Biology, 25(21), pp.R1047-R1050.
In-text: (Li, Chen and Hua, 1998)
Your Bibliography: Li, C., Chen, J. and Hua, T., 1998. Precambrian Sponges with Cellular Structures. Science, 279(5352), pp.879-882.
In-text: (Maruyama and Santosh, 2008)
Your Bibliography: Maruyama, S. and Santosh, M., 2008. Models on Snowball Earth and Cambrian explosion: A synopsis. Gondwana Research, 14(1-2), pp.22-32.
In-text: (Melián et al., 2012)
Your Bibliography: Melián, C., Alonso, D., Allesina, S., Condit, R. and Etienne, R., 2012. Does Sex Speed Up Evolutionary Rate and Increase Biodiversity?. PLoS Computational Biology, 8(3), p.e1002414.
In-text: (Murdock, 2020)
Your Bibliography: Murdock, D., 2020. The ‘biomineralization toolkit’ and the origin of animal skeletons. Biological Reviews, 95(5), pp.1372-1392.
In-text: (Olejarz, Iwasa, Knoll and Nowak, 2021)
Your Bibliography: Olejarz, J., Iwasa, Y., Knoll, A. and Nowak, M., 2021. The Great Oxygenation Event as a consequence of ecological dynamics modulated by planetary change. Nature Communications, 12(1).
In-text: (Pisani, Poling, Lyons-Weiler and Hedges, 2004)
Your Bibliography: Pisani, D., Poling, L., Lyons-Weiler, M. and Hedges, S., 2004. BMC Biology, 2(1), p.1.
In-text: (Quattrini et al., 2020)
Your Bibliography: Quattrini, A., Rodríguez, E., Faircloth, B., Cowman, P., Brugler, M., Farfan, G., Hellberg, M., Kitahara, M., Morrison, C., Paz-García, D., Reimer, J. and McFadden, C., 2020. Palaeoclimate ocean conditions shaped the evolution of corals and their skeletons through deep time. Nature Ecology & Evolution, 4(11), pp.1531-1538.
In-text: (Schiffbauer et al., 2016)
Your Bibliography: Schiffbauer, J., Huntley, J., O’Neil, G., Darroch, S., Laflamme, M. and Cai, Y., 2016. The Latest Ediacaran Wormworld Fauna: Setting the Ecological Stage for the Cambrian Explosion. GSA Today, pp.4-11.
In-text: (Schiffbauer et al., 2020)
Your Bibliography: Schiffbauer, J., Selly, T., Jacquet, S., Merz, R., Nelson, L., Strange, M., Cai, Y. and Smith, E., 2020. Discovery of bilaterian-type through-guts in cloudinomorphs from the terminal Ediacaran Period. Nature Communications, 11(1).
In-text: (Shaw, 2015)
Your Bibliography: Shaw, S., 2015. Planet of the bugs. Chicago: The University of Chicago Press.
In-text: (Smith and Harper, 2013)
Your Bibliography: Smith, M. and Harper, D., 2013. Causes of the Cambrian Explosion. Science, 341(6152), pp.1355-1356.
In-text: (Strachan et al., 2020)
Your Bibliography: Strachan, R., Murphy, J., Darling, J., Storey, C. and Shields, G., 2020. Precambrian (4.56–1 Ga). Geologic Time Scale 2020, 1, pp.481-493.
In-text: (Towe, 1970)
Your Bibliography: Towe, K., 1970. Oxygen-Collagen Priority and the Early Metazoan Fossil Record. Proceedings of the National Academy of Sciences, 65(4), pp.781-788.
In-text: (Wendel, 2014)
Your Bibliography: Wendel, J., 2014. Tectonic Events May Have Triggered the Cambrian Explosion. Eos, Transactions American Geophysical Union, 95(46), pp.420-420.
In-text: (WILSON and ANDERSON, 2004)
Your Bibliography: WILSON, H. and ANDERSON, L., 2004. MORPHOLOGY AND TAXONOMY OF PALEOZOIC MILLIPEDES (DIPLOPODA: CHILOGNATHA: ARCHIPOLYPODA) FROM SCOTLAND. Journal of Paleontology, 78(1), pp.169-184.
In-text: (Zhang and Shu, 2013)
Your Bibliography: Zhang, X. and Shu, D., 2013. Causes and consequences of the Cambrian explosion. Science China Earth Sciences, 57(5), pp.930-942.
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