View/Edit arkL Database event - base Ludwigia murchisonae TAZ

NB The age of the event may be set by placement within an interval (pup), placement between 2 events (pub), offset from an event or as a preset.
If data is given for more than one of these the priority is preset over offset over pub over pup.

Navigation

The age-window currently being used to search for terms for autocompletion is 122.7 -> 222.7 Ma.
event above: base Ludwigia murchisonae TAsZ
event below: base Leioceras bifidatum TAsZ

base event of: Ludwigia haugi TAsZ; Ludwigia murchisonae TAZ;
top event of: Leioceras bifidatum TAsZ; Leioceras opalinum TAZ;

Mode selector

if you were a logged in editor there would be an input button here

Event data

2
term: Id:308 sort: 1020
Event Type: Event Display:
TSC Column: id:
Taxon:
dataset: ammonites Tethyan (dataset id = 2)
stage:
notes_2004:
notes_2020:
compilation_notes:
refs to add:
linked refs:Huret et al. 2008;
Placement by pup up within interval: id: 475
Placement by pub
higher event: id: (Ma)
lower event: id: (Ma)
Placement by offset offset from event: link to event: base Brasilia bradfordensis TAZ (id: 305)
preset_age:
preset_age_notes:
Age172.7 Δ=0
Tracecode:; Q7 event age from offset     Equation:
Age 2020     Original age 2020 (where age has been corrected by me)

if you were a logged in editor there would be an input button here

Go to: arkLpopulate :: arkL data upload

Event References

Huret, E., et al. (2008). Astronomical calibration and correlation of the Lower Jurassic, Paris and Lombard basins (Tethys). In, 33rd International Geological Congress, Oslo, Norway, Abstract. -. gs

Dataset References

Aretz, M., Herbig, H. -G. & Wang, X. D. (2020). Chapter 23 - The Carboniferous Period. In, Gradstein, F. M. , Ogg, J. G. , Schmitz, M. D. , and Ogg, G. M. (ed.) The Geologic Time Scale 2020. Elsevier, Boston, MA 2: 811-874. gs

Gradstein, F. M., et al. (1994). Cenozoic biostratigraphy of the North Sea and Labrador Shelf. Micropaleontology. 40 (Suppl.),: 1-152. gs

Hardenbol, J., et al. (1998). Mesozoic and Cenozoic Sequence Chronostratigraphic Framework of European Basins. In, de Graciansky, P. -C. , Hardenbol, J. , Jacquin, T. , and Vail, P. R. (ed.) Mesozoic- Cenozoic Sequence Stratigraphy of European Basins. SEPM Special Publication . 60: 3-13 & appendix 763-783. gs

Henderson, C. M. (2020). Chapter 3D - Conodonts. In, Gradstein, F. M. , Ogg, J. G. , Schmitz, M. D. , and Ogg, G. M. (ed.) The Geologic Time Scale 2020. Elsevier, Boston, MA 1: 56-60. gs

Henderson, C. M., Davydov, V. I. & Wardlaw, B. R. (2012a). The Permian Period. In, Gradstein, F. , et al. , (ed.) The Geologic Time Scale 2012. Amsterdam: Elsevier Press 653-679. gs

Hoedemaeker, P. J., et al. (1993). Ammonite zonation for the Lower Cretaceous of the Mediterranean region; basis for the stratigraphic correlation within IGCP, Project 262. Revista Española de Paleontología. 8: 117-120. gs

Jenks, J. F., et al. (2015). Chapter 13. Biostratigraphy of Triassic ammonoids. In, Klug, C. , Korn, D. , De Baets, K. , Kruta, I. , Mapes, R. H. (ed.) Ammonoid Paleobiology: From Macroevolution to Paleogeography. Topics in Geobiology . 44: 329-371. gs

Klug, C., et al. (2015). Ammonoid Paleobiology: From Macroevolution to Paleogeography. Topics in Geobiology. 44: 1-328. gs

Kozur, H. W. (2003). Integrated ammonoid, conodont and radiolarian zonation of the Triassic. Hallesches Jahrbuch für Geowissenschaften. B25: 49-79. gs

Leckie, R. M., Bralower, T. J. & Cashman, R. (2002). Oceanic anoxic events and plankton evolution: biotic response to tectonic forcing during the mid-Cretaceous. Paleoceanography. 17(1288): -. gs

McArthur, J. M., et al. (2007). Palaeotemperatures, polar ice-volume, and isotope stratigraphy (Mg/Ca, d18O, d13C, 87Sr/86Sr): the Early Cretaceous (Berriasian, Valanginian, Hauterivian). Palaeogeography Palaeoclimatology Palaeoecology. 248: 391-430. gs

Mietto, P. & Manfrin, S. (1998). Ammonoid. Columns for Triassic chart of Mesozoic and Cenozoic sequence chronostratigraphic framework of European basins, by Hardenbol, J., Thierry, J., Farley, M.B., Jacquin, T., de Graciansky, P.-C., and Vail, P.R. (coordinators). In, de Graciansky, P. -C. , Hardenbol, J. , Jacquin, T. , and Vail, P. R. (ed.) Mesozoic- Cenozoic Sequence Stratigraphy of European Basins. SEPM Special Publication . 60: 779-779. gs

Moullade, M., et al. (1998). Le stratotype historique de l’Aptien (région de Cassis-La Bédoule, SE France): synthèse stratigraphique. Géologie Méditerranéene. 25(3-4): 289-298. gs

Obradovich, J. D. (1993). A Cretaceous time scale. In, Caldwell, W. G. E. , and Kauffman, E. G. (ed.) Evolution of the Western Interior Basin. Geological Association of Canada, Special Paper . 39: 379-396. gs

Reboulet, S., et al. (2018). Report on the 6th international meeting of the IUGS Lower Cretaceous Ammonite Working Group, the Kilian Group (Vienna, Austria, 20th August 2017). Cretaceous Research. 91: 100-110. gs

Thierry, J. (1998). Ammonites. Columns for Jurassic chart of Mesozoic and Cenozoic sequence chronostratigraphic framework of European basins, by Hardenbol, J., Thierry, J., Farley, M.B., Jacquin, T., de Graciansky, P.-C., and Vail, P.R. (coordinators). In, de Graciansky, P. -C. , Hardenbol, J. , Jacquin, T. , and Vail, P. R. (ed.) Mesozoic- Cenozoic Sequence Stratigraphy of European Basins. SEPM Special Publication . 60: 776-777. gs