Čtyřnožci (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Čtyřnožci" in Czech language version.

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cambridge.org

  • DICKSON, Blake V.; PIERCE, Stephanie E. How (and why) fins turn into limbs: insights from anglerfish. S. 87–103. Earth and Environmental Science Transactions of the Royal Society of Edinburgh [online]. 2018-03. Roč. 109, čís. 1–2, s. 87–103. Dostupné online. DOI 10.1017/S1755691018000415. (anglicky) 

doi.org

dx.doi.org

  • SUES, Hans-Dieter. Authorship and date of publication of the name Tetrapoda. S. e1564758. Journal of Vertebrate Paleontology [online]. 2019-01-02. Roč. 39, čís. 1, s. e1564758. Dostupné online. DOI 10.1080/02724634.2019.1564758. (anglicky) 
  • QVARNSTRÖM, Martin; SZREK, Piotr; AHLBERG, Per E.; NIEDŹWIEDZKI, Grzegorz. Non-marine palaeoenvironment associated to the earliest tetrapod tracks. S. 1074. Scientific Reports [online]. 2018-01-18. Roč. 8, čís. 1, s. 1074. Dostupné online. DOI 10.1038/s41598-018-19220-5. PMID 29348562. (anglicky) 
  • DUNNE, Emma M.; CLOSE, Roger A.; BUTTON, David J.; BROCKLEHURST, Neil; CASHMORE, Daniel D.; LLOYD, Graeme T.; BUTLER, Richard J. Diversity change during the rise of tetrapods and the impact of the ‘Carboniferous rainforest collapse’. S. 20172730. Proceedings of the Royal Society B: Biological Sciences [online]. 2018-02-14. Roč. 285, čís. 1872, s. 20172730. Dostupné online. DOI 10.1098/rspb.2017.2730. (anglicky) 
  • GESS, Robert; AHLBERG, Per Erik. A tetrapod fauna from within the Devonian Antarctic Circle. S. 1120–1124. Science [online]. 2018-06-08. Roč. 360, čís. 6393, s. 1120–1124. Dostupné online. DOI 10.1126/science.aaq1645. (anglicky) 
  • DICKSON, Blake V.; PIERCE, Stephanie E. How (and why) fins turn into limbs: insights from anglerfish. S. 87–103. Earth and Environmental Science Transactions of the Royal Society of Edinburgh [online]. 2018-03. Roč. 109, čís. 1–2, s. 87–103. Dostupné online. DOI 10.1017/S1755691018000415. (anglicky) 
  • HERRON, Sean Thor; FLEMING, Edward James; FLOWERDEW, Michael John. Transition from swimming to walking preserved in tetrapod trackways from the Late Carboniferous of Bjørnøya, Svalbard. S. 202012. Norwegian Journal of Geology [online]. 2020-08-08. Roč. 100, s. 202012. Dostupné online. DOI 10.17850/njg100-2-6. (anglicky) 
  • SIMÕES, Tiago R.; PIERCE, Stephanie E. Sustained high rates of morphological evolution during the rise of tetrapods. S. 1403–1414. Nature Ecology & Evolution [online]. 2021-08-23. Roč. 5, čís. 10, s. 1403–1414. Dostupné online. DOI 10.1038/s41559-021-01532-x. (anglicky) 
  • AHLBERG, Per. Jennifer Clack (1947–2020). S. 587–587. Nature [online]. 2020-04-30. Roč. 580, čís. 7805, s. 587–587. Dostupné online. DOI 10.1038/d41586-020-01217-8. (anglicky) 

doi.org

  • SMITHSON, Timothy R. and CLACK, Jennifer A. A new tetrapod from Romer's Gap reveals an early adaptation for walking. Earth and Environmental Science Transactions of The Royal Society of Edinburgh. 2018, vol. 108, iss. 1, s. 89–97. doi: https://doi.org/10.1017/S1755691018000075

geologi.no

njg.geologi.no

  • HERRON, Sean Thor; FLEMING, Edward James; FLOWERDEW, Michael John. Transition from swimming to walking preserved in tetrapod trackways from the Late Carboniferous of Bjørnøya, Svalbard. S. 202012. Norwegian Journal of Geology [online]. 2020-08-08. Roč. 100, s. 202012. Dostupné online. DOI 10.17850/njg100-2-6. (anglicky) 

nature.com

  • QVARNSTRÖM, Martin; SZREK, Piotr; AHLBERG, Per E.; NIEDŹWIEDZKI, Grzegorz. Non-marine palaeoenvironment associated to the earliest tetrapod tracks. S. 1074. Scientific Reports [online]. 2018-01-18. Roč. 8, čís. 1, s. 1074. Dostupné online. DOI 10.1038/s41598-018-19220-5. PMID 29348562. (anglicky) 
  • SIMÕES, Tiago R.; PIERCE, Stephanie E. Sustained high rates of morphological evolution during the rise of tetrapods. S. 1403–1414. Nature Ecology & Evolution [online]. 2021-08-23. Roč. 5, čís. 10, s. 1403–1414. Dostupné online. DOI 10.1038/s41559-021-01532-x. (anglicky) 
  • AHLBERG, Per. Jennifer Clack (1947–2020). S. 587–587. Nature [online]. 2020-04-30. Roč. 580, čís. 7805, s. 587–587. Dostupné online. DOI 10.1038/d41586-020-01217-8. (anglicky) 

nih.gov

ncbi.nlm.nih.gov

  • QVARNSTRÖM, Martin; SZREK, Piotr; AHLBERG, Per E.; NIEDŹWIEDZKI, Grzegorz. Non-marine palaeoenvironment associated to the earliest tetrapod tracks. S. 1074. Scientific Reports [online]. 2018-01-18. Roč. 8, čís. 1, s. 1074. Dostupné online. DOI 10.1038/s41598-018-19220-5. PMID 29348562. (anglicky) 

osel.cz

phys.org

  • Uppsala University. The earliest well-preserved tetrapod may never have left the water. phys.org [online]. 2019-10-23 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • University of Birmingham. Rainforest collapse 307 million years ago impacted the evolution of early land vertebrates. phys.org [online]. 2018-02-06 [cit. 2022-12-26]. Dostupné online. (anglicky) 
  • YIRKA, Bob. Stable isotopes suggest earliest tetrapods were euryhaline creatures. phys.org [online]. 2018-06-01 [cit. 2022-12-26]. Dostupné online. (anglicky) 

researchgate.net

royalsocietypublishing.org

  • DUNNE, Emma M.; CLOSE, Roger A.; BUTTON, David J.; BROCKLEHURST, Neil; CASHMORE, Daniel D.; LLOYD, Graeme T.; BUTLER, Richard J. Diversity change during the rise of tetrapods and the impact of the ‘Carboniferous rainforest collapse’. S. 20172730. Proceedings of the Royal Society B: Biological Sciences [online]. 2018-02-14. Roč. 285, čís. 1872, s. 20172730. Dostupné online. DOI 10.1098/rspb.2017.2730. (anglicky) 

science.org

tandfonline.com

  • SUES, Hans-Dieter. Authorship and date of publication of the name Tetrapoda. S. e1564758. Journal of Vertebrate Paleontology [online]. 2019-01-02. Roč. 39, čís. 1, s. e1564758. Dostupné online. DOI 10.1080/02724634.2019.1564758. (anglicky)