Gliederfüßer (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Gliederfüßer" in German language version.

refsWebsite
Global rank German rank
2nd place
3rd place
123rd place
6th place
4th place
7th place
3,844th place
3,581st place
2,543rd place
1,988th place
6,651st place
low place
low place
low place
1,389th place
859th place
low place
low place
1,283rd place
1,723rd place
234th place
203rd place

doi.org

  • Carlos A. Martínez-Muñoz: The correct authorship of Arthropoda—A reappraisal. In: Integrative Systematics. 6. Jahrgang, Nr. 1, 4. Mai 2023, ISSN 2628-2380, S. 1–8, doi:10.18476/2023.472723.
  • Michael F. Land, Dan-E. Nilsson: General purpose and special purpose visual systems. In: Invertebrate Vision. Cambridge University Press, Cambridge, UK 2006, ISBN 0-521-83088-5, S. 167–210. doi:10.2277/0521830885 Download
  • Dan-Eric Nilsson: The evolution of eyes and visually guided behaviour. In: Philosophical Transactions of the Royal Society. Series B 364. (2010), S. 2833–2847. doi:10.1098/rstb.2009.0083
  • T. Ryan Gregory: The evolution of complex organs. In: Evolution. Education and Outreach. 1 (2008), S. 358–389. doi:10.1007/s12052-008-0076-1
  • Carsten H. G. Müller, Andy Sombke, Jörg Rosenberg: The fine structure of the eyes of some bristly millipedes (Penicillata, Diplopoda): additional support for the homology of mandibulate ommatidia. In: Arthropod structure & development. 36(4) 2007, S. 463–476. doi:10.1016/j.asd.2007.09.002
  • Steffen Harzsch, Kathia Vilpoux, David C. Blackburn, David Platchetzki, Nadean L. Brown, Roland Melzer, Karen E. Kempler, Barbara A. Battelle: Evolution of Arthropod Visual Systems: Development of the Eyes and Central Visual Pathways in the Horseshoe Crab Limulus polyphemus Linnaeus, 1758 (Chelicerata, Xiphosura). In: Developmental Dynamics. 235 (2006), S. 2641–2655. doi:10.1002/dvdy.20866
  • Thomas W. Cronin, Megan L. Porter: Exceptional Variation on a Common Theme: The Evolution of Crustacean Compound Eyes. In: Evolution: Education and Outreach. 1: S. 463–475. doi:10.1007/s12052-008-0085-0
  • Elke K. Buschbeck, Markus Friedrich: Evolution of Insect Eyes: Tales of Ancient Heritage, Deconstruction, Reconstruction, Remodeling, and Recycling. In: Evolution: Education and Outreach. 1: S. 448–462. doi:10.1007/s12052-008-0086-z
  • Übersicht in: Rolf Elofsson: The frontal eyes of crustaceans. In: Arthropod Structure & Development. 35 (2006), S. 275–291. doi:10.1016/j.asd.2006.08.004
  • Kaspar P. Mueller, Thomas Labhart: Polarizing optics in a spider eye. In: Journal of Comparative Physiology. 196(5) 2010, S. 335–348. doi:10.1007/s00359-010-0516-6
  • Jerome Casas, Olivier Dangles: Physical Ecology of Fluid Flow Sensing in Arthropods. In: Annual Revue of Entomology. 55. (2010), S. 505–520. doi:10.1146/annurev-ento-112408-085342
  • Sanjay P. Sane1 Matthew J. McHenry: The biomechanics of sensory organs. Integrative and Comparative Biology. (2009), S. i8–i23. doi:10.1093/icb/icp112
  • Friedrich G. Barth: Spider mechanoreceptors Current Opinion. In: Neurobiology. 14 (2004), S. 415–422. doi:10.1016/j.conb.2004.07.005
  • Jayne E. Yack: The Structure and Function of Auditory Chordotonal Organs in Insects. In: Microscopy Research and Technique. 63 (2004), S. 315–337. doi:10.1002/jemt.20051
  • Roger D. Santer & Eileen A. Hebets (2008): Agonistic signals received by an arthropod filiform hair allude to the prevalence of near-field sound communication. Proceedings of the Royal Society Series B 275: 363–368. doi:10.1098/rspb.2007.1466
  • A. Stumpner & D. von Helversen: Evolution and function of auditory systems in insects. In: Naturwissenschaften. 88 (2001), S. 159–170 doi:10.1007/s001140100223
  • J. M. Lovell, M. M. Findlay, R. M. Moate, H. Y. Yan: The hearing abilities of the prawn Palaemon serratus. In: Comparative Biochemistry and Physiology. Part A 140 (2004), S. 89–100. doi:10.1016/j.cbpb.2004.11.003
  • Hugh M. Robertson, Lauren B. Kent: Evolution of the gene lineage encoding the carbon dioxide receptor in insects. In: Journal of Insect Science. Band 9, Nr. 1, 1. Januar 2009, ISSN 1536-2442, S. 19, doi:10.1673/031.009.1901 (oxfordjournals.org).
  • Eliane Wajnberg, Daniel Acosta-Avalos, Odivaldo Cambraia Alves, Jandira Ferreira de Oliveira, Robert B. Srygley, Darci M. S. Esquivel: Magnetoreception in eusocial insects: an update. In: Journal of the Royal Society Interface. 7 (2010), S. S207–S225. doi:10.1098/rsif.2009.0526.focus
  • B. W. Pattullo, D. L. Macmillan: Making sense of electrical sense in crayfish. In: Journal of Experimental Biology. 213 (2010), S. 651–657. doi:10.1242/jeb.039073
  • Jon F. Harrison, Alexander Kaiser, John M. VandenBrooks: Atmospheric oxygen level and the evolution of insect body size. In: Proceedings of the Royal Society. Series B 277 (2010), S. 1937–1946. doi:10.1098/rspb.2010.0001
  • John J. Socha, Wah-Keat Lee, Jon F. Harrison, James S. Waters, Kamel Fezza, Mark W. Westneat: Correlated patterns of tracheal compression and convective gas exchange in a carabid beetle. In: The Journal of Experimental Biology. 211 (2008), S. 3409–3420. doi:10.1242/jeb.019877
  • Alexander Kaiser, C. Jaco Klok, John J. Socha, Wah-Keat Lee, Michael C. Quinlan, Jon F. Harrison: Increase in tracheal investment with beetle size supports hypothesis of oxygen limitation on insect gigantism. In: Proceedings of the National Academy of Sciences USA. 104(32) 2007, S. 13198–13203. doi:10.1073/pnas.0611544104
  • Ilse Bartsch (2004): Geographical and ecological distribution of marine halacarid genera and species (Acari: Halacaridae) Experimental and Applied Acarology 34: 37–58. doi:10.1023/B:APPA.0000044438.32992.35
  • Patrick R. H. Steinmetz, Roman P. Kostyuchenko, Antje Fischer, Detlev Arendt: The segmental pattern of otx, gbx, and Hox genes in the annelid Platynereis dumerilii. In: Evolution & Development. 13(1) 2011, S. 72–79 doi:10.1111/j.1525-142X.2010.00457.x
  • z. B. Lahcen I. Campbell, Omar Rota-Stabelli, Gregory D. Edgecombe, Trevor Marchioro, Stuart J. Longhorn, Maximilian J. Telford, Hervé Philippe, Lorena Rebecchi, Kevin J. Peterson, Davide Pisani: MicroRNAs and phylogenomics resolve the relationships of Tardigrada and suggest that velvet worms are the sister group of Arthropoda. In: Proceedings of the National Academy of Sciences USA. 2011. doi:10.1073/pnas.1105499108
  • auch auf Basis des Blutfarbstoffs Hämocyanin begründet: Beyhan Ertas, Björn M. von Reumont, Johann-Wolfgang Wägele, Bernhard Misof, Thorsten Burmester: Hemocyanin Suggests a Close Relationship of Remipedia and Hexapoda. In: Molecular Biology and Evolution. 26 (12) 2009, S. 2711–2718. doi:10.1093/molbev/msp186
  • z. B. J. Mallatt, G. Giribet: Further use of nearly complete 28S and 18S rRNA genes to classify Ecdysozoa: 37 more arthropods and a kinorhynch. In: Molecular Phylogenetics and Evolution. 40(3) 2006, S. 772–794. doi:10.1016/j.ympev.2006.04.021
  • Georg Mayer, Paul M. Whitington: Velvet worm development links myriapods with chelicerates. In: Proceedings of the Royal Society London. Series B 276 (2009), S. 3571–3579. doi:10.1098/rspb.2009.0950
  • Nicholas J. Strausfeld, David R. Andrew: A new view of insect–crustacean relationships I. Inferences from neural cladistics and comparative neuroanatomy. In: Arthropod Structure & Development. 40(3) 2011, S. 276–288. doi:10.1016/j.asd.2011.02.002
  • Björn M. von Reumont, Karen Meusemann, Nikolaus U. Szucsich, Emiliano Dell’Ampio, Vivek Gowri-Shankar, Daniela Bartel, Sabrina Simon, Harald O. Letsch, Roman R. Stocsits, Yun-xia Luan, Johann Wolfgang Wägele, Günther Pass, Heike Hadrys, Bernhard Misof: Can comprehensive background knowledge be incorporated into substitution models to improve phylogenetic analyses? A case study on major arthropod relationships. In: BMC Evolutionary Biology. 9 (2009), S. 119. doi:10.1186/1471-2148-9-119 (open access)
  • Maximilian J. Telford, Sarah J. Bourlat, Andrew Economou, Daniel Papillon, Omar Rota-Stabelli: The evolution of the Ecdysozoa. In: Philosophical Transactions of the Royal Society. Series B 363 (2008), S. 1529–1537. doi:10.1098/rstb.2007.2243
  • Omar Rota-Stabelli, Lahcen Campbell, Henner Brinkmann, Gregory D. Edgecombe, Stuart J. Longhorn, Kevin J. Peterson, Davide Pisani, Hervé Philippe, Maximilian J. Telford: A congruent solution to arthropod phylogeny: phylogenomics, microRNAs and morphology support monophyletic Mandibulata. In: Proceedings of the Royal Society London. Band 278, Nummer 1703, Januar 2011, S. 298–306, doi:10.1098/rspb.2010.0590, PMID 20702459, PMC 3013382 (freier Volltext).
  • Gregory D. Edgecombe: Arthropod phylogeny: An overview from the perspectives of morphology, molecular data and the fossil record. In: Arthropod Structure & Development. 39 (2010), S. 74–87. doi:10.1016/j.asd.2009.10.002
  • Karen Meusemann, Björn M. von Reumont, Sabrina Simon, Falko Roeding, Sascha Strauss, Patrick Kück, Ingo Ebersberger, Manfred Walzl, Günther Pass, Sebastian Breuers, Viktor Achter, Arndt von Haeseler, Thorsten Burmester, Heike Hadrys, J. Wolfgang Wägele, Bernhard Misof (2010): A Phylogenomic Approach to Resolve the Arthropod Tree of Life. In: Molecular Biology and Evolution. 27(11) 2010, S. 2451–2464. doi:10.1093/molbev/msq130
  • Jerome C. Regier, Jeffrey W. Shultz, Andreas Zwick, April Hussey, Bernard Ball, Regina Wetzer, Joel W. Martin, Clifford W. Cunningham: Arthropod relationships revealed by phylogenomic analysis of nuclear protein-coding sequences. In: Nature. 463 (2010), S. 1079–1083. doi:10.1038/nature08742
  • Jianni Liu, Degan Shu, Jian Han, Zhifei Zhang, Xingliang Zhang: Origin, diversification, and relationships of Cambrian lobopods. In: Gondwana Research. 14 (2008), S. 277–283, doi:10.1016/j.gr.2007.10.001.
  • Jianni Liu, Michael Steiner, Jason A. Dunlop, Helmut Keupp, Degan Shu, Qiang Ou, Jian Han, Zhifei Zhang, Xingliang Zhang: An armoured Cambrian lobopodian from China with arthropod-like appendages. In: Nature. 470 (2011), S. 526–530, doi:10.1038/nature09704.
  • Dieter Waloszek, Junyuan Chen, Andreas Maas, Xiuqiang Wang: Early Cambrian arthropods — new insights into arthropod head and structural evolution. In: Arthropod Structure & Development. 34 (2005), S. 189–205, doi:10.1016/j.asd.2005.01.005.
  • Jun-Yuan Chen: The sudden appearance of diverse animal body plans during the Cambrian explosion. In: International Journal of Developmental Biology 53. (2009), S. 733–751, doi:10.1387/ijdb.072513cj.
  • Graham E. Budd, Maximilian J. Telford: The origin and evolution of arthropods. In: Nature. 457(12) 2009, S. 812–817, doi:10.1038/nature07890.
  • Han Zeng, Fangchen Zhao, Kecheng Niu, Maoyan Zhu, Diying Huang: An early Cambrian euarthropod with radiodont-like raptorial appendages. In: Nature. 588. Jahrgang, Nr. 7836, Dezember 2020, ISSN 1476-4687, S. 101–105, doi:10.1038/s41586-020-2883-7, PMID 33149303 (englisch, nature.com).
  • Gerhard Scholtz, Gregory D. Edgecombe: The evolution of arthropod heads: reconciling morphological, developmental and palaeontological evidence. In: Development, Genes and Evolution. 216 (2006), S. 395–415, doi:10.1007/s00427-006-0085-4.
  • N. E. Vaccari, G. D. Edgecombe, C. Escudero: Cambrian origins and affinities of an enigmatic fossil group of arthropods. In: Nature. 430 (2004), S. 554–557, doi:10.1038/nature02705.

environment.gov.au

  • Arthur D. Chapman: Numbers of Living Species in Australia and the World. 2. Auflage. Report for the Australian Biological Resources Study, Canberra, Australia September 2009, ISBN 978-0-642-56861-8. (online)

nature.com

nih.gov

ncbi.nlm.nih.gov

  • Omar Rota-Stabelli, Lahcen Campbell, Henner Brinkmann, Gregory D. Edgecombe, Stuart J. Longhorn, Kevin J. Peterson, Davide Pisani, Hervé Philippe, Maximilian J. Telford: A congruent solution to arthropod phylogeny: phylogenomics, microRNAs and morphology support monophyletic Mandibulata. In: Proceedings of the Royal Society London. Band 278, Nummer 1703, Januar 2011, S. 298–306, doi:10.1098/rspb.2010.0590, PMID 20702459, PMC 3013382 (freier Volltext).
  • Han Zeng, Fangchen Zhao, Kecheng Niu, Maoyan Zhu, Diying Huang: An early Cambrian euarthropod with radiodont-like raptorial appendages. In: Nature. 588. Jahrgang, Nr. 7836, Dezember 2020, ISSN 1476-4687, S. 101–105, doi:10.1038/s41586-020-2883-7, PMID 33149303 (englisch, nature.com).

oxfordjournals.org

jinsectscience.oxfordjournals.org

paleoitalia.org

  • Jerzy Dzik: The xenusian-to-anomalocaridid transition within the lobopodians. In: Bollettino della Società Paleontologica Italiana. 50(1) 2011, S. 65–74. Download.

pan.pl

app.pan.pl

  • Martin Stein, Dieter Waloszek, Aandreas Maas, Joachim T. Haug, Klaus J. Müller (2008): The stem crustacean Oelandocaris oelandica re-visited. In: Acta Palaeontologica Polonica. 53 (3) 2008, S. 461–484. Download (PDF; 2,0 MB).
  • Jean Vannier, Jun-Yuan Chen, Di-Ying Huang, Sylvain Charbonnier, Xiu-Qiang Wang (2006): The Early Cambrian origin of thylacocephalan arthropods. In: Acta Palaeontologica Polonica. 51(2) 2006, S. 201–214. Download (PDF; 1,3 MB).

photobiology.info

  • Übersicht in: Carlo Musio, Silvia Santillo: Non-visual photoreception in invertebrates. 2009 Download

phys.org

sussex.ac.uk

eprints.sussex.ac.uk

zdb-katalog.de