hõimkond
Cnidaria Verrill, 1865
Ainuõõssed
Valik taksonit käsitlevast teaduskirjandusest
Vinn, O., Alkahtane, A. A., Al Farraj, S., El Hedeny, M. 2025. First record of Chaetosalpinx bioclaustrations in the rugose corals from the Late Ordovician of Baltica.  Revista Brasileira de Paleontologia   27,   4,   e20240475. DOI:10.4072/rbp.2024.4.0475
Vinn, O., Ernst, A., Wilson, M., Toom, U. 2025. Symbiosis between bryozoans with erect cribrate colonies and rugose corals from the lower Katian (Upper Ordovician) of Estonia.  Carnets de Géologie   25,   6,   147-154. DOI:10.2110/carnets.2025.2506
Vinn, O., Liang, K., Isakar, M., Alkahtane, A. A., Al Farraj, S., El Hedeny, M. 2025. The evolutionary innovation of coral colonization on motile gastropod shells arose shortly after the Great Ordovician Biodiversification Event in Baltica.  Palaios   40,   2,   62-69. DOI:10.2110/palo.2024.010
Rozhnov, S. V. 2024. A possible archaic precursor of the octocoral structural plan from the Ordovician of Estonia.  Papers in Palaeontology   10,   5,   e1593. DOI:10.1002/spp2.1593
Kazantseva, E. S., Koromyslova, A. V., Krutykh, A. A. 2024. A new species of Mucophyllum rugose coral encrusted by bryozoans, tentaculoid tubeworms, and tabulates from the upper Silurian of Saaremaa, Estonia.  Neues Jahrbuch für Geologie und Paläontologie. Abhandlungen   312,   3,   261-273. DOI:10.1127/njgpa/2024/1211
Vinn, O., Wilson, M. A., Isakar, M., Toom, U. 2024. Two high Value Geoheritage Sites on Sõrve Peninsula (Saaremaa Island, Estonia): A Window to the Unique Late Silurian Fauna.  Geoheritage   16,   2,   53-68. DOI:10.1007/s12371-024-00957-7
Kazantseva, E. S. 2023. Co-Growth in Rugosa: Types, Morphology, Special Features and Origin.  Paleontological Journal   57,   9,   931-1042. DOI:10.1134/S003103012309006X
Hints, L., Pärnaste, H., Männik, P., Reich, M., Rozhnov, S. 2022. Development of faunal diversity during the late Llandovery–early Wenlock in the easternmost part of the Baltic Palaeobasin – implications for the Ireviken Event.  Estonian Journal of Earth Sciences   71,   2,   89-110. DOI:10.3176/earth.2022.07
Du, M., Nõlvak, J., Tan, J., Gao, S., Wang, W. 2022. Melanosclerites from the Late Ordovician to earliest Silurian of Estonia and their palaeogeographical implications.  Palynology   46,   3,   1-16. DOI:10.1080/01916122.2021.2012538
Zapalski, M. K., Vinn, O., Toom, U., Ernst, A., Wilson, M. A. 2022. Bryozoan–cnidarian mutualism triggered a new strategy for greater resource exploitation as early as the Late Silurian.  Scientific Reports   12,      number: 15556. DOI:10.1038/s41598-022-19955-2
Zapalski, M. K., Król, J. J., Halamski, A. T., Wrzołek, T., Rakociński, M., Baird, A. H. 2022. Coralliths of tabulate corals from the Devonian of the Holy Cross Mountains (Poland).  Palaeogeography, Palaeoclimatology, Palaeoecology   585,      110745. DOI:10.1016/j.palaeo.2021.110745
Vinn, O., Ernst, A., Wilson, M. A., Toom, U. 2022. Symbiosis in trepostome bryozoans from the Sandbian (Late Ordovician) of Estonia.  Historical Biology   34,   6,   1029-1038. DOI:10.1080/08912963.2021.1959579
Vinn, O., Wilson, M. A., Madison, A., Kazantseva, E., Toom, U. 2022. First symbiotic association between hederelloids and rugose corals (latest Silurian of Saaremaa, Estonia).  Palaios   37,   7,   368-373. DOI:10.2110/palo.2022.005
Vinn, O., Wilson, M., Holmer, L. E., Ernst, A., Tinn, O., Toom, U. 2022. Diverse endobiotic symbiont fauna from the late Katian (Late Ordovician) of Estonia.  Palaeontologia Electronica   25,   3,   1-13. DOI:10.26879/1232
Jeon, J., Vinn, O., Liang, K., Zapalski, M. K., Toom, U., Kershaw, S. 2022. Stromatoporoid-coral/tubeworm intergrowths in the lowermost Silurian Varbola Formation of Estonia: first evidence of competitive interaction.  Lethaia   55,   2,   1-13. DOI:10.18261/let.55.2.4
Vinn, O., Wilson, M. A. 2021. Evolutionary History of Colonial Organisms as Hosts and Parasites.  The Evolution and Fossil Record of Parasitism: Coevolution and Paleoparasitological Techniques, pp. 99-119.   Springer International Publishing.  DOI:10.1007/978-3-030-52233-9_4
Vinn, O., Ernst, A., Wilson, M., Toom, U. 2021. Intergrowth of bryozoans with other invertebrates in the Late Pridoli of Saaremaa, Estonia.  Annales Societatis Geologorum Poloniae   91,   2,   101-111. DOI:10.14241/asgp.2021.04
Kröger, B., Vinn, O., Toom, U., Corfe, I. J., Kuva, J., Zatoń, M. 2021. On the enigma of Palaenigma wrangeli (Schmidt), a conulariid with a partly non-mineralized skeleton.  PeerJ   9,      e12374. DOI:/10.7717/peerj.12374
Kazantseva, E. S. 2021. Pseudocolonies of Silurian Rugoses Microplasma schmidti Dybowski from Estonia: Morphology and Origin.  Paleontological Journal   55,   5,   469-476. DOI:10.1134/S0031030121050075
Tinn, O., Vinn, O., Ainsaar, L. 2020. The enigmatic cnidarian Martsaphyton moxi gen. et sp. nov. from the Darriwilian (Middle Ordovician) of Estonia.  Estonian Journal of Earth Sciences   69,   4,   223-232. DOI:10.3176/earth.2020.12
Liang, K., Elias, R. J., Lee, D. 2019. Morphometrics, growth characteristics, and phylogenetic implications of Halysites catenularius (Tabulata, Silurian, Estonia).  Journal of Paleontology   93,   2,   215-231. DOI:10.1017/jpa.2018.73
Vinn, O., Ernst, A., Wilson, M. A., Toom, U. 2019. Symbiosis of conulariids with trepostome bryozoans in the Upper Ordovician of Estonia (Baltica).  Palaeogeography, Palaeoclimatology, Palaeoecology   518,      89-96. DOI:10.1016/j.palaeo.2019.01.018
Vinn, O., Toom, U. 2017. Early symbiotic rugosan endobionts in stromatoporoids from the Rhuddanian of Estonia (Baltica).  Lethaia   50,   2,   237-243. DOI:10.1111/let.12190
Vinn, O., Liang, K., Toom, U. 2017. Endobiotic rugose coral symbionts in Silurian tabulate corals from Estonia (Baltica).  Palaios   32,   3,   158-165. DOI:10.2110/palo.2016.084
Vinn, O., Ernst, A., Toom, U. 2017. Rare rugosan-bryozoan intergrowth from the Upper Ordovician of Estonia.  Carnets de Géologie   17,   7,   145-151. DOI:10.4267/2042/62664
Vinn, O., Kirsimäe, K., Parry, L., Toom, U. 2016. A new Byronia species from the Late Ordovician of Estonia.  Estonian Journal of Earth Sciences   65,   4,   201-206. DOI:10.3176/earth.2016.17
Kershaw, S., Mõtus, M.-A. 2016. Palaeoecology of Corals and Stromatoporoids in an Upper Silurian Biostrome in Estonia.  Acta Palaeontologica Polonica   61,   1,   33-50. DOI:10.4202/app.00094.2014
Adomat, F., Munnecke, A., Kido, E. 2016. Mass occurrence of the large solitary rugose coral Phaulactis angusta at the boundary Lower/Upper Visby Formation in the Silurian of Gotland, Sweden: palaeoecology and depositional implications. pp. 393–409. DOI:10.1080/11035897.2015.1103780
Vinn, O., Wilson, M. A. 2016. Symbiotic interactions in the Silurian of Baltica.  Lethaia   49,   3,   413-420. DOI:10.1111/let.12158
Jarochowska, E., Hierl, F., Vinn, O., Munnecke, A. 2016. Reducing taxonomic noise in problematic fossils: revision of the incertae sedis genus Allonema based on shape analysis.  Bulletin of Geosciences   91,   1,   97-110. DOI:10.3140/bull.geosci.1588
Vinn, O., Ernst, A., Toom, U. 2016. Earliest symbiotic rugosans in cystoporate bryozoan Ceramopora intercellata Bassler, 1911 from Late Ordovician of Estonia (Baltica).  Palaeogeography, Palaeoclimatology, Palaeoecology   461,      140-144. DOI:10.1016/j.palaeo.2016.08.016
Stewart, S. E., Clarkson, E. N. K., Ahlgren, J., Ahlberg, P., Schoenemann, B. 2015. Sphenothallus from the Furongian (Cambrian) of Scandinavia.  GFF   137,   1,   20-24. DOI:10.1080/11035897.2014.929173
Vinn, O., Kirsimäe, K. 2015. Alleged cnidarian Sphenothallus (Cnidaria?) in the Late Ordovician of Baltica, its mineral composition and microstructure.  Acta Palaeontologica Polonica   60,   4,   1001-1008. DOI:10.4202/app.00049.2013
Vinn, O., Wilson, M. A., Toom, U., Mõtus, M. 2015. Earliest known rugosan-stromatoporoid symbiosis from the Llandovery of Estonia (Baltica).  Palaeogeography, Palaeoclimatology, Palaeoecology   431,      1-5. DOI:10.1016/j.palaeo.2015.04.023
Vinn, O., Mõtus, M.-A. 2014. Endobiotic Rugosan Symbionts in Stromatoporoids from the Sheinwoodian (Silurian) of Baltica.  PLOS ONE   9,   2,   e90197. DOI:10.1371/journal.pone.0090197
Liang, K., Lee, D.-J., Elias, R. J., Pärnaste, H., Mõtus, M.-A. 2013. Growth characteristics of Protoheliolites norvegicus (Tabulata; Upper Ordovician; Estonia).  Palaeontology   56,   4,   867-891. DOI:10.1111/pala.12022
Savazzi, E. 2012. A reassessment of the Lower Cambrian psammocoral Spatangopsis costata.  Paleontological Research   16,   2,   159-170. DOI:10.2517/1342-8144-16.2.159
Mõtus, M., Zaika, Y. 2012. The oldest heliolitids from the early Katian of the East Baltic region.  GFF   134,   3,   225-234. DOI:10.1080/11035897.2012.721805
Vinn, O., Mõtus, M.-A. 2012. New endobiotic cornulitid and Cornulites sp. aff. Cornulites celatus (Cornulitida, Tentaculita) from the Katian of Vormsi Island, Estonia.  GFF   134,   1,   3-6. DOI:10.1080/11035897.2011.647067
Vinn, O., Wilson, M. A. 2012. Encrustation and bioerosion on late Sheinwoodian (Wenlock, Silurian) stromatoporoids from Saaremaa, Estonia.  Carnets de Géologie   12,   2,   183-191. DOI:10.4267/2042/47551
Vinn, O., Mõtus, M. 2012. Diverse early endobiotic coral symbiont assemblage from the Katian (Late Ordovician) of Baltica.  Palaeogeography, Palaeoclimatology, Palaeoecology   321-322,      137-141. DOI:10.1016/j.palaeo.2012.01.028
Vinn, O., Wilson, M. A. 2012. Epi- and endobionts on the late Silurian (early Pridoli) stromatoporoids from the Saaremaa Island, Estonia.  Annales Societatis Geologorum Poloniae   82,   3,   195-200.
Mõtus, M.-A., Vinn, O. 2009. The worm endosymbionts in tabulate corals from the Silurian of Podolia, Ukraine.  Estonian Journal of Earth Sciences   58,   3,   185-192. DOI:10.3176/earth.2009.3.03
Vinn, O., Mõtus, M. 2008. The earliest endosymbiotic mineralized tubeworms from the Silurian of Podolia, Ukraine.  Journal of Paleontology   82,   2,   409-414. DOI:10.1666/07-056.1
Trampisch, C. 2007. Melanosclerites from the Öjlemyr Cherts, Gotland.  Comunicações Geológicas   94,      93-107.
Mõtus, M.-A., Hints, O. (eds) 2007. 10th International Symposium on Fossil Cnidaria and Porifera. Excursion B2: Lower Paleozoic geology and corals of Estonia. Excursion Guidebook. pp. 1-64.  Institute of Geology at Tallinn University of Technology. 
Mõtus, M.-A., Grytsenko, V. 2007. Morphological variation of the tabulate coral Paleofavosites cf. collatatus Klaamann, 1961 from the Silurian of the Bagovichka River localities, Podolia (Ukraine).  Estonian Journal of Earth Sciences   56,   3,   143-156.
Winchester-Seeto, T., McIlroy, D. 2006. Lower Cambrian melanosclerites and foraminiferal linings from the Lontova Formation, St. Petersburg, Russia.  Review of Palaeobotany and Palynology   139,   1-4,   71-79. DOI:10.1016/j.revpalbo.2005.07.012
Mõtus, M.-A. 2006. Intraspecific variation in Wenlock tabulate corals from Saaremaa (Estonia) and its taxonomic implications.  Proceedings of the Estonian Academy of Sciences. Geology   55,   1,   24-42. DOI:10.3176/geol.2006.1.02
Jeppsson, L., Calner, M., Eriksson, M. 2005. Locality descriptions.  Sveriges Geologiska Undersökning, Rapporter och Meddelanden   121,      22-47.
Young, G. A., Kershaw, S. 2005. Classification and controls of internal banding in Palaeozoic stromatoporoids and colonial corals.  Palaeontology   48,   3,   623-651. DOI:10.1111/j.1475-4983.2005.00480.x
Mõtus, M.-A., Sandström, O. 2005. Cystihalysites sp. and its significance to biostratigraphy and event stratigraphy in the Ludlow (Late Silurian) of Gotland, Sweden.  GFF   127,   4,   269-272. DOI:10.1080/11035890501274269
Mõtus, M.-A. 2004. Tabulate corals from the Lower Silurian of Jämtland (Sweden).  GFF   126,   4,   339-352. DOI:10.1080/11035890401264339
Neuman, B. E. E. 2003. The new early Palaeozoic rugose coral genera Eurogrewingkia gen. nov. and Fosselasma gen. nov..  Proceedings of the Estonian Academy of Sciences. Geology   52,   4,   199-212. DOI:10.3176/geol.2003.4.02
Nestor, H., Einasto, R., Nestor, V., Märss, T., Viira, V. 2001. Description of the type section, cyclicity, and correlation of the Riksu Formation (Wenlock, Estonia).  Proceedings of the Estonian Academy of Sciences. Geology   50,   3,   149-173. DOI:10.3176/geol.2001.3.02
Mõtus, M.-A. 2001. Environment related morphological variation in Early Silurian tabulate corals from the Baltic area.  Bulletin of the Tohoku University Museum      1,   62-69.
Johannessen, W. H. 1999. Nyhamnia n. gen., a new monotypic cystiphyllid rugose coral genus from the Lower Silurian of Gotland.  GFF   121,   4,   333-335. DOI:10.1080/11035899901214333
Mõtus, M.-A., Klaamann, E. 1999. The halysitid coral genera Halysites and Cystihalysites from Gotland, Sweden.  GFF   121,   2,   81-91. DOI:10.1080/11035899901212081
Johannessen, W. 1998. Silurian dissepimentate cystiphyllid rugose corals from Baltoscandia.  Doctor scient thesis in palaeontology/historical geology. Geological Institute, University of Bergen, pp. 1-34.   Geological Institute, University of Bergen. 
Johannessen, W. H. 1998. Two species of the operculate rugose coral genus Rhizophyllum from Ludlovian beds on Gotland.  GFF   120,   1,   1-16. DOI:10.1080/11035899801201001
Neuman, B. E. E. 1997. Aspects on life strategies of the Upper Ordovician rugose coral Bodophyllum duncanae (Spjeldnæs, 1961) from the Oslo Region.  Coral Research Bulletin   5,      197-201.
Weyer, D. 1997. Lambelasma balticum n. sp. (Anthozoa, Rugosa) aus einem baltoskandischen Oberordoviz-Geschiebe.  Berliner Beiträge zur Geschibeforschung         43-50.
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Dixon, O. A. 1996. Heliolitine corals of the upper Douro Formation (upper Silurian), Canadian Arctic Islands.  Journal of Paleontology   70,   5,   718-740. DOI:10.1017/S0022336000023787
Johannessen, W. H. 1995. Nanophyllum, a new monotypic rugose coral genus from the Lower Silurian of Gotland.  GFF   117,   1,   53-55. DOI:10.1080/11035899509546197
Johannessen, W. H. 1995. Species of the Silurian operculate rugose coral genera Araeopoma and Rhytidophyllum.  GFF   117,   1,   31-41. DOI:10.1080/11035899509546194
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Leitud liigid
1. Acanthocyclus catinulus Dybowski, 1873 | Wenlock
2. Acanthophyllum linarsonii Dybowski, 1874 | Silur
3. Acervularia ananas (Linnaeus, 1758) | Jaagarahu lade
4. Acervularia breviseptata Weissermel, 1894 | Silur
5. Acervularia conglomerate Lonsdale, 1839 | Silur
6. Acervularia luxurians (Eichwald, 1829) | Silur
8. Acidolites bersiniensis Bondarenko, 1983 | Katy lade
9. Acidolites insequens Bondarenko, 1983 | Hirnanti lade
10. Acidolites lateseptatus (Lindström, 1899) | Juuru lade
11. Acidolites medialis Bondarenko, 1982 | Vormsi lade
12. Acidolites schmidti (Sokolov, 1955) | Vormsi lade
13. Acidolites tumulosus (Hill, 1953) | Katy lade
14. Adaverina acclinis (Klaamann, 1966) | Adavere lade
15. Adaverina adaverensis (Klaamann, 1966) | Adavere lade
16. Alveolites suborbicularis Lamarck, 1801 | Ludfordi lade
19. Anisophyllum lindströmi Dybowski, 1873 | Silur
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Klassifikatsioon
| organismirühm | Biota | 
| riik | Animalia | 
| hõimkond | Agmata | 
| incertae sedis | |
| Annelida | |
| Arthropoda | |
| Brachiopoda | |
| Bryozoa | |
| Chordata | |
| Cnidaria | |
| alamhõimkond | Anthozoa | 
| Medusozoa | |
| klass | Hydrozoa | 
| Psammocorallia | |
| Scyphozoa | |
| selts | Melanoskleritoitidea | 
| perekond | Aspidella | 
| Byronia | |
| Semenola | |
| hõimkond | Echinodermata | 
| Hemichordata | |
| Mollusca | |
| Onychophora | |
| Pogonophora | |
| Porifera | |
| Priapulida | |
| alamhõimkond | Lophotrochozoa | 
| klass | Chitinozoa | 
| selts | Hyolithelminthida |