sugukond
Ichnoreticulinidae Wisshak, Knaust et Bertling, 2019
Taksoni kirjeldused
Wisshak et al., 2019a
Diagnosis: Systems of strongly ramifying microborings composed of cylindrical tunnels that often show intercalary, lateral, or terminal swellings.
Ethological category: Domichnia (dwelling traces) or fodinichnia (combined dwelling and feeding traces).
Valik taksonit käsitlevast teaduskirjandusest
Knaust, D., Schnick, H. 2024. Trace fossils from the Maastrichtian chalk of the Isle of Rügen, north-east Germany. Geologie en Mijnbouw 103, DOI:10.1017/njg.2024.6
Mergl, M. 2024. Endolithic Microborings in Corals from the Acanthopyge Limestone (Middle Devonian, Eifelian; Barrandian Area; Czech Republic). Folia Musei rerum naturalium Bohemiae occidentalis. Geologica et Paleobiologica 58, 2, 17-27. DOI:10.2478/fbgp-2024-0003
Wisshak, M., Meyer, N., Kuklinski, P., Rüggeberg, A., Freiwald, A. 2022. ‘Ten Years After’—a long‐term settlement and bioerosion experiment in an Arctic rhodolith bed (Mosselbukta, Svalbard). Geobiology 20, 1, 112-136. DOI:10.1111/gbi.12469
Seuss, B., Nützel, A. 2019. Bioerosion in fossil cephalopods: a case study from the Upper Carboniferous Buckhorn Asphalt Quarry Lagerstätte, Oklahoma, USA. Facies 65, 2, 6-17. Springer Nature. DOI:10.1007/s10347-018-0547-y
Radtke, G., Campbell, S.E., Golubić, S. 2016. Conchocelichnus seilacheriigen. et isp. nov., a Complex Microboring Trace of Bangialean Rhodophytes. Ichnos 23, 3-4, 228-236. DOI:10.1080/10420940.2016.1199428
Vogel, K., Brett, C. E. 2009. Record of microendoliths in different facies of the Upper Ordovician in the Cincinnati Arch region USA: The early history of light-related microendolithic zonation. Palaeogeography, Palaeoclimatology, Palaeoecology 281, 1-2, 1-24. DOI:10.1016/j.palaeo.2009.06.032
Golubic, S., Radtke, G. 2008. The trace Rhopalia clavigera isp. n. reflects the development of its maker Eugomontia sacculata Kornmann, 1960. Current developments in bioerosion, pp. 95-108. Springer. DOI:10.1007/978-3-540-77598-0_5
Wisshak, M., Gektidis, M., Freiwald, A., Lundälv, T. 2005. Bioerosion along a bathymetric gradient in a cold-temperate setting (Kosterfjord, SW Sweden): an experimental study. Facies 51, 1-4, 93-117. DOI:10.1007/s10347-005-0009-1
Radtke, G., Golubić, S. 2005. Microborings in mollusk shells, Bay of Safaga, Egypt: Morphometry and ichnology. Facies 51, 1-4, 118-134. DOI:10.1007/s10347-005-0016-02
Försterra, G., Beuck, L., Häussermann, V., Freiwald, A. 2005. Shallow-water Desmophyllum dianthus (Scleractinia) from Chile: characteristics of the biocoenoses, the bioeroding community, heterotrophic interactions and (paleo)-bathymetric implications. Cold-Water Corals and Ecosystems, pp. 937-977. Springer Berlin Heidelberg. DOI:10.1007/3-540-27673-4_48
Hung, N. H. 2001. Astrorhizae-like structures on epitheca of rugose corals from the Carboniferous of Laos. Acta Palaeontologica Polonica 46, 4, 583-588.
Bundschuh, M. 2000. Silurische Mikrobohrspuren - ihre Beschreibung und Verteilung in verschiedenen Faziesräumen (Schweden, Litauen, Großbritannien und USA). pp. 1-129. Johann Wolfgang Goethe University.
Schmidt, H. 1992. Mikrobohrspuren ausgewählter Faziesbereiche der tethyalen und germanischen Trias (Beschreibung, Vergleich und bathymetrische Interpretation). Frankfurter geowissenschaftliche Arbeiten; A: Geologie, Paläontologie 12, 1-228.
Radtke, G. 1991. Die mikroendolithischen Spurenfossilien im Alt-Tertiär West-Europas und ihre palökologische Bedeutung. Courier Forschungsinstitut Senckenberg 138, 1-185.
Campbell, S., Kaźmierczak, J., Golubić, S. 1979. Palaeoconchocelis starmachii gen. n., sp. n., an endolithic rhodophyte (Bangiaceae) from the Silurian of Poland. Acta Palaeontologica Polonica 24, 3, 405-407.
Bystrow, A. P. 1956. On the damage to the skeleton of fossil animals by fungi. Vestnik Leningradskogo Universiteta, seriya geologiya i geografiya 11, 30-46.
Leitud liigid
Klassifikatsioon